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Showing posts with label blockchain. Show all posts
Showing posts with label blockchain. Show all posts

Wednesday, 16 November 2016

Why Blockchain’s growing pains will be worth it

Experts say blockchain has a bright future, much like the optimistic predictions the industry had for the cloud 10 years ago.


HALF MOON BAY, Calif. – Experts at a recent technology conference agreed that blockchain has a bright future, but warned it may be a rocky ride until that future arrives. Blockchain is a distributed database that uses a secure digital ledger of transactions that users can share across a computer network. It’s also the technology behind virtual currency bitcoin.      
“When you are at the leading edge there will be mistakes. People will get a lot wrong in the next five years. I think of it kind of like running with scissors,” says Constellation Research analyst Steve Wilson at the Oct. 26 Connected Enterprise conference hosted by his company.
blockchain photos connected enterprise
But blockchain enthusiast Richie Etwaru, chief digital officer at IMS Health, had a different take. He started by pointing to the colorful pair of sneakers he was wearing and noted he bought them using bitcoin, the controversial digital currency that’s been plagued by security issues.
“I think blockchain is the biggest thing I’ve seen in my life,” says Etwaru. “I work in healthcare and bitcoin to blockchain is like what AOL chat was to the internet, and bitcoin is only one substantiation of blockchain.”

Blockchain can help the healthcare industry build trust

In the healthcare industry Etwaru says blockchain can help establish new business models that overcome what he describes as the massive absence of trust that exists today among patients, doctors, the pharmaceutical industry and the government.
“We started thinking of how we can engineer trust into the network and the distributed ledger (i.e. blockchain) is a great way to solve the trust issue because the information is owned by everyone and no one, and can be seen by everyone and no one,” he says. “It’s immutable, you can’t reverse it, it’s pretty decently encrypted and it can be permissions-based.”
One example Etwaru points to is that trials for new drugs are often flawed because patients don’t trust how their information is going to be used. “With blockchain you could do things like citizen research for healthcare. There could be autonomous organizations like a Wikipedia of research on cancer based on an abundance of trust enabled by blockchain,” said Etwaru.

Blockchain can disrupt the cybersecurity landscape

Mike Kail,chief innovation officer at Cybric, a company that’s looking to “disrupt the cybersecurity landscape” with new services, says blockchain has got people thinking differently about what’s possible.
Kail says blockchain technology promises to change the status quo of having to trust a broker to complete financial transactions to a system of automated, verifiable transactions that eliminates the middleman. Speaking more broadly, he says blockchain can bring more efficiency to every company with a supply chain challenge.
For companies looking to test the blockchain waters he suggests figuring out a small use case where you can apply blockchain methodology and monitor the results.
Another speaker, Shawn Wiora, cofounder and CEO of Maxxsure, a cybersecurity and cyber insurance company, is using blockchain to offer new kinds of services. “We’re able to offer things like variable premiums for a cyber insurance policy that changes as your cyber profile changes,” said Wiora. “Does anyone else offer that?” he asked rhetorically.
But even with some companies already innovating, veteran Silicon Valley product executive Chirag Mehta says blockchain’s best days are clearly ahead of it. “Blockchain looks like what the cloud looked like 10 or 15 years ago,” says Mehta, a former executive at SAP and adjunct professor at Santa Clara University where he teaches such topics as web services and cloud computing to graduate students.
One difference he sees vs. the cloud though that’s surprised him, is that companies big and small seem to be interested in exploring blockchain’s potential. “Big companies weren’t as interested in the cloud in the early days,” says Mehta. “They weren’t as ready to jump in.”
What blockchain does really well, he adds, is provide the technical integrity necessary to let you trust a series of events. “But don’t confuse that with security,” he emphasized.
If blockchain needs a blue chip, big name advocate it has one in IBM. Aron Dutta, global head of blockchain at IBM, says he’s already running blockchain technology globally across industries. He sees blockchain as giving companies a way to rethink business models and make more money.
Dutta says he has over 4,000 PhDs and 100,000 consultants he can call on to aid his work at IBM, so stay tuned. “It’s not about use cases,” he emphasizes. “It’s about business models.”

Tuesday, 1 November 2016

BlockCloud: Re-inventing Cloud with Blockchains

BlockCloud: Re-inventing Cloud with Blockchains

by Mike Gault
 It's the year 2025 and it has been a stunning week in the world of computing.  

Larry Parallelogram,  CEO of Avogadro Corporation, the world’s largest computing company, recently announced that 500 of the  Fortune 500 have completed the migration of all mission critical processes to Avogadro’s compute platform, BlockCloud. 

This announcement, coming exactly one year after the bankruptcy of former computing giants IBM and HP, has reinforced the dominance of Avogadro in the Enterprise compute market. When asked to reflect on the success of BlockCloud, Parallelogram stated “It can all be traced back to a day in 2010 when I met this Estonian company….” 
 
Over the last ten years two of the most important technologies that have seen widespread adoption have been virtualization and Bitcoin. Virtualization paved the way for cloud computing and the Bitcoin protocol has the potential to reinvent finance using cryptographic building blocks called blockchains. 
 
Strangely, no one has put the two (Cloud and blockchains) together. If they did they would realize that together they would the solve the thorniest problem for Enterprise CIOs, namely “how do I comply with the law and trust my mission critical processes to an outsourced vendor who has little if any accountability?” 

Block Chains

Bitcoin relies heavily on the blockchain, a public “ledger” of every transaction that has ever taken place that is distributed to the edge of the network.  The key idea is that there is no centralized authority that is responsible for saying what is true or what is false, rather multiple distributed parties come to consensus, that consensus is entered into the ledger which thereafter can be accessed by anyone in the future. It is computationally infeasible for a single actor (or anything less that majority consensus) to go back and modify history. 

The Cloud as a Data Logistics Platform

What do consumers of cloud computing care about?
What do they want to know is true?
What would be the equivalent of a blockchain transaction in the cloud?

If we position the cloud as a giant logistics platform for data, then we can think of a transaction as the transport or processing of data. Data enters in to the cloud (network), it is processed (compute) and then is either returned to a consumer or kept for re-use at a later date (storage).

CIOs want a VERIFIABLE data supply chain

If you ask CIOs what they need to move their mission critical processes to the cloud then you will  hear terms like “accountability, reliability, compliance, security, verifiability, auditability, acceptance of liability” etc. in other words they demand that there is a secure supply chain and that every step in that supply chain can be verified in real-time and when things go wrong it is possible to figure out what went wrong and that there is someone who can be held accountable.” 
 
Today not a single cloud vendor can say this. It also shows the opportunity; if such a platform could be built and the concerns of Enterprise CIOs could be satisfied then the entire global enterprise IT budget would be up for grabs. 

Building a BlockCloud

In principle such as system can be easily envisioned. Everything, that happens to data, whether transport, processing or storage of data is entered into the blockchain.

Afterwards what happened to data, who accessed the data, where it went and how that data was governed can be verified by anyone who has access to the blockchain. In essence the blockchain freezes the compute platform in time and  users of the platform can verify that the platform is in the correct state in real-time. 
 
Such a system would give complete traceability, accountability and transparency for the cloud, entities who are either using or administrating the cloud can be held responsible for their actions, regulators get to audit all processes and everyone involved can verify what happened when.
 
Of course a reasonable question to ask would be whether such as system could be built in reality. Even a modest petabyte cloud easily implies billions of data transactions every second that would need to be entered into the blockchain and distributed out to the edge. The implied network, storage and compute requirements would make it impossible to scale.

Right?  

Now here's a thought - imagine if that block chain wasn't just for one cloud - but for all clouds, and all data - every transport, compute and storage of data across all networks in the world. Imagine what such as a system would imply for accountability and transparency for global society. It would transform our society from one that is trust based to one that is truth based, i.e. humans can choose to trust each other, but they can also prove what happened using the blockchain.

Sunday, 25 September 2016

Linking Up Blockchain and Cloud

Linking Up Blockchain and Cloud

As more industries are finding use cases for Blockchain in the public cloud, here's how you can take advantage of this technology.

http://www.cloudtp.com/doppler/linking-blockchain-cloud/?utm_campaign=Blog%20Promotion&utm_content=39763209&utm_medium=social&utm_source=twitter

Blockchain is a public ledger system that can be used to record any kind of transaction. The ledgers are stored concurrently in multiple locations and communicate using a series of nodes, with entries that are cryptographically signed to prevent modification. Blockchain also provides an auditable trail of all transactions and removes the need for a trusted middleman to oversee them.
Bitcoin relies heavily on its underlying Blockchain technology. The Blockchain model illustrates the idea of not making a centralized authority responsible for saying what is true or what is false. Instead, multiple distributed parties come to consensus, and that consensus is stored in the ledger which thereafter can be accessed by anyone. It’s infeasible for a single entity (e.g., a business or person) to go back and modify history.

So, what are the use cases?

Real Estate

Real estate agents can work with businesses and people located thousands of miles away, even in other countries. The transitions would take place instantly, as if a team of lawyers were involved, and even more securely. The nature of Blockchain transactions could prevent real estate fraud and eliminate the need for third party escrow services.

Finance

Many use cases are found in the world of high finance. For example, transactions involving mega-trades for the purchase of a company could take place at the press of a button–again, with little risk around security or even legal issues.

Healthcare

Blockchain technology could also have a huge impact on the ability to track and protect personal healthcare data. Medical billing logs could approach the privacy issue from a financial angle. So not only will clinical data be protected, but the telling cost transactions as well, making it harder for insurance companies and healthcare institutions to make errors or commit fraud. Another use case could be consolidated medical records, or the ability to bring Electronic Health Records (EHR) to a centralized and secure place. Records could be created, shared and changed by multiple parties, creating complete transparency in one’s medical history. Prescription orders could also be verified by insurance providers and paid for through Blockchain; validating the type of drug and correct payment for the patient.

Music

The music industry is implementing Blockchain to take on problems regarding royalty and distribution rights. PeerTracks is a startup whose music streaming app will link all uploaded songs to Blockchain based smart contracts that designate payment to the lyricist, producer, performer, etc., based on the number of plays a song receives. PeerTracks also issues its own form of cryptocurrency called “artist tokens”. These are tokens artists can sell to early listeners to fund their hopeful rise to fame. A purchase of a token will link the listener to a smart contract that the artist can later pay out in perks, such as con- cert tickets. As the artist becomes more popular, the value of the token increases, incentivizing token holders to promote their favorite artists. Other startups like Ujo Music and Proof of Existence are also attempting to solve the age-old problem of protecting intellectual property, ensuring that creators get fair credit and value for their original works.

Many More

There are even applications that move beyond current ways of thinking. For example, after IBM purchased Weather.com, a weather data provider, they found that integrating weather data and forecasts with Blockchain technology could create an interesting new paradigm. According to IBM, more and more businesses are taking an interest in finding out more about the weather system. For instance, the ability to leverage weather data to determine its effects on the retail market, or the ability to get a humidity and temperature reading to determine the proper mix of chemicals for a manufacturing process. With Blockchain technology, IBM can offer different “tiers” of information, depending upon what consumers want. Blockchain is available at all times, to people all over the world, at no cost. Additionally, Blockchain can be used to store, transmit and share all types of data at a fraction of the cost of traditional solutions.

Blockchain and the Cloud

IBM has taken the lead in moving Blockchain applications to the cloud. Enterprises now have a secure IBM Cloud environment to develop Blockchain applications that will meet regulatory requirements.
IBM took elements of the Linux Foundation’s open source Hyperledger Project to develop this environment. Using these elements as the basis, they tested the code and certified the framework as secure.
Finally, IBM made all of it available in a dedicated environment within IBM’s Softlayer Cloud.
IBM’s approach to Blockchain leverages industry standards such as Federal Information Processing Standards (FIPS 140-2), Evaluation Assurance Levels (EAL), Sarbanes-Oxley(SOX) Act, Health Insurance Portability and Accountability Act (HIPAA), Gramm-Leach-Bliley ActFederal Information Security Management Act (FISMA) and, finally, theEuropean Union Protection Directive. IBM met its objective to provide government, financial services and healthcare organizations with an environment to securely build and use Blockchain networks.
According to an InfoWorld article on the topic: “The cloud services have been optimized for cloud-based Blockchain networks by providing an auditable operating environment with the comprehensive log data necessary for forensics and compliance. Cryptographic keys are secured in tamper-resistant storage. The modules also detect and respond to unauthorized attempts to access the keys. Members in a Blockchain network do not share any aspect of the operating environment, such as memory, disk drives or hardware, to prevent data or memory leakage.”
IBM is not the only Cloud/Blockchain game in town. Microsoft has been adding Blockchain as a Service (BaaS) offerings to the Azure marketplace. Microsoft also has a partnership with a consortium of more than 40 banks, including Goldman Sachs. These institutions have been granted open access to Azure and dedicated Microsoft staff to build their Blockchain applications. Microsoft has also worked with Ripple, a cryptographic ledger software vendor, and other startups to develop new Blockchain applications.

Why Cloud-Based Blockchain?

Core to the questions out there is that, if Blockchain needs the ultimate in security, why is public cloud a fit, such as the IBM and Microsoft solutions mentioned above?
There are a few key reasons why public cloud is the preferred platform:
  • High performance computing and I/O is needed to manage the security processing requirements of Blockchain. Public clouds allow you to allocate as many instances as you like from a public cloud provider, and this elastic approach to scaling and de-scaling to support a secure translation is ideal for a Blockchain transaction.
  • The pervasiveness of public cloud computing means that the node of a Blockchain system can be supported outside of the enterprise by a neutral third party, the public cloud provider. Moreover, this means that access is just as easy from a small business as a large one, because you’re only paying for the infrastructure by usage. This makes the costs of moving to Blockchain affordable, and thus removes budgetary barriers to entry.
  • Access to Blockchain enabled applications and data are largely identity- and role-based. The use of public cloud has become the proving ground for identity- and access-based management approaches, such as those provided by Microsoft, Google and AWS. These services are already native on these cloud providers; you don’t have to integrate them yourself.
  • The use of intensive transaction logging, with both distributed and I/O-intensive impacts, is perfect for cloud computing. Logging operations can be spun off on new machine instances and storage instances without impacting the core application. These are launched, used to support the Blockchain processes and then de-provisioned.

So, Now What?

Your interest in Blockchain really depends upon the vertical market you’re in. Operations that drive many financial transactions, trading something that costs money, will find huge promise in this technology.
However, even organizations that are not big money shops like banks, can find value in Blockchain. Consider the applications available to purchase and track materials and inventory, as well as applications for retail organizations that can sell merchandise via Blockchain. Healthcare payers and providers can find applications for Blockchain, to reduce the cost of dealing with large transactions, and for the secure storage and dissemination of patient data.
Moreover, IoT technology providers could find that, as with the Weather.com applications we mentioned above, they can use Blockchain as a way to push data from device sensors to the database. For instance, when tracking a tanker and all its systems across the ocean, in the event of an incident (e.g., a storm), you can understand what went right and wrong, with a clear understanding that neither the company nor the crew have the ability to change that data once it’s brought into the Blockchain network edge.
So, what do you do, specifically, to take advantage of Blockchain? There are a few steps we suggest:
  1. Look at the core systems and systems requirements that may benefit from Blockchain within your organization or company. What are the core business benefits that you’re seeking? required ROI from the Blockchain? What would be the implementation of Blockchain?
  2. Look at your current cloud strategy, and the best way to support any new Blockchain applications. This means, understand how existing cloud end-points map into (or don’t work with) a Blockchain implementation and/or applications. A Blockchain strategy may also affect the public clouds that you chose. Right now, each vendor is off in its own direction for supporting Blockchain.
  3. Identify the tactical use cases for Blockchain. Understand the general requirements we covered in the first point. But also define the existing use cases and break them down into their sub-parts, so you understand how they must be built. You can work up from the use cases, to the applications and then to the technology solution that you’ll need to support Blockchain.
If you follow these steps, the path to Blockchain via the cloud should be a short one, and not at all complex. The complexity does come in when dealing with the maturity of a technology that has not yet established itself. Time will solve that problem, and the cloud should be able to do the rest.

David Linthicum

David is a SVP at Cloud Technology Partners and an internationally recognized cloud computing expert and thought leader. With more than 13 books on computing, 3,000 published articles, 500 conference presentations and numerous appearances on radio and TV programs, David has spent the last 30 years teaching businesses how to use resources more productively.

Wednesday, 1 June 2016

Will Blockchain Become The Internet Of Finance?

I’m the head of the Corporate Market for the Tax & Accounting business at Thomson Reuters – we build the corporate tax software used by many of the world's largest multinationals, as well as the Big 4 accounting firms. I work closely with global business leaders to set up their tax technology, so I have visibility into how they handle financial reporting and the challenges they face. I also serve on the board of a growing medical technology startup. In this blog, I analyze the connections between economics and business opportunities, highlighting examples of where tax helps or hinders growth. Follow the brand @YourONESOURCE.

Perhaps an even better question is: When did back-office record-keeping become so sexy?
For anyone who’s been following innovation in the financial technology space, the word blockchain has become the buzzword du jour in the span of about 12 months. Conference sessionsnews storiesregulatory testimony – they are all consumed with the underlying ledger technology that powers Bitcoin. It’s estimated that $1 billion has been invested in blockchain start-ups since the technology was introduced.
How did this happen and what about this particular technology has so many people in so many different industries tripping over themselves to develop new blockchain-based technologies?
To fully understand the practical potential for blockchain, it is important to first understand how it works and where it came from. In its simplest possible form, the blockchain is a digital platform for recording and verifying transactions. It traces its roots to Bitcoin, the digital “cryptocurrency” created in a 2009 whitepaper written by an unknown author or authors using the pseudonym Satoshi Nakamoto.
The paper outlines the process of creating a purely peer-to-peer version of electronic cash that can be sent directly from one party to another without going through a financial institution. The key to maintaining the integrity of that system is a digital ledger that timestamps transactions by logging them into an ongoing chain of record, providing proof of all transactions on the Bitcoin network. This unbreakable, un-hackable, crowd-sourced chain of record is the blockchain.
Where this concept gets exciting is in its potential application across a number of different industries. The financial services space has been the fastest to adopt the technology, recognizing its potential to streamline cumbersome and costly processes like trade processing, clearing and settlement. This potential led the Bank of England to suggest that blockchain could be the “Internet of finance.” In describing the logic behind their thinking, the BoE wrote:
“The key innovation in this regard is the introduction of a ‘distributed ledger’, which allows a digital currency to be used in a decentralised payment system. Any digital record of currency opens up the possibility that it may be copied and spent more than once. With conventional bank deposits, banks hold the digital record and are trusted to ensure its validity. With digital currencies, by contrast, the ledger containing the record of all transactions by all users is publicly available to all. Rather than requiring users to have trust in special institutions, reliance is placed on the network and the rules established to reliably change the ledger.”
 Basically, what the BoE is saying is that blockchain has the power to remove all of the middlemen that are party to a transaction, creating a pure digital record that exists independent of any single institution and cannot be tampered with or exploited in any way. In that sense, blockchain is a dream come true for the entire financial system, addressing everything from too-big-to-fail to anti-money laundering and corporate transparency issues in a single, elegantly designed package.
It’s not just finance either. One group of big tech and finance companies has combined forces in the Open Ledger Project to create a wide range of different blockchain-style projects for different specialized needs, ranging from conventional supply chain management to basic administrative tasks like exchange of car titles.  Some schools are even using blockchain to record students’ grades and share academic certificates.  And, of course, there is already talk of tax being collected via blockchain at some point in the future.
In many ways, the business opportunities enabled by blockchain technology are not dissimilar in concept from other disruptive technologies built on the peer-to-peer model, such as Uber and Airbnb.  And that’s where things start to get really interesting for blockchain. Like these other types of peer-to-peer applications, blockchain has the power to significantly disrupt the status quo by removing administrative layers from the banking and finance process, ultimately streamlining labor- and cost-intensive functions across a wide array of financial services. While we’ve yet to really see the first real Uber or Airbnb of blockchain emerge, there are dozens of different firms working to develop solutions based on the technology. Imagine what will be possible when they get the recipe right.

Thursday, 19 May 2016

How will blockchain technology transform financial services?



It doesn’t feel like a revolutionary moment. A member of a small team from the Swiss bank UBS, holed up on the 42nd floor of London’s Canary Wharf, taps a screen and a bond is sold by a company called ABC to an investor called XYZ.

It is the type of transaction executed millions of times a day by banks globally but this dummy transfer is different. It was completed via an internal blockchain, the shared database technology that gained notoriety as the platform for the crypto currency bitcoin. Banks are now racing to harness the power of the blockchain technology, in a belief that it could cut up to $20bn off costs and transform the way the industry works.
UBS is not alone. Its skyscraper laboratory is part of a huge experiment taking place across several industries that is most pronounced in the finance world. Banks, insurers and companies ranging from IBM to PwC are trying to work out how they can adapt the technology that, in its simplest form, allows consumers and suppliers to connect directly and form online networks, removing the need for middlemen.
 
For the financial services sector it offers the opportunity to overhaul existing banking infrastructure, speed settlements and streamline stock exchanges, although regulators will want to be assured that it can be done securely. The developments potentially combine two of the most dynamic industries: the computing hub of Silicon Valley and the money management of Wall Street and the City of London.
“We could go the way that file transfer technology changed music, allowing new businesses like iTunes to emerge,” says Michael Harte, chief operations and technology officer at Barclays. “That is why there is such feverish activity at the moment.”

No central authority
Blockchain has been hailed by admirers as holding the revolutionary promise that the internet did two decades ago. Business figures from Microsoft’s Bill Gates to Richard Branson, the founder of the Virgin Group, have extolled its potential; on a trade mission to Asia in August, David Cameron, the UK prime minister, included a blockchain expert among his entourage.


Evangelists say the possibilities are limitless. Applications range from storing client identities to handling cross-border payments, clearing and settling bond or equity trades to smart contracts that are self-executing, such as a credit derivative that pays out automatically if a company goes bust or a bond that regularly pays interest to the holder.

Some go as far as to suggest that the technology even offers the potential to disrupt companies that have forged reputations as “disrupters”, such as Uber and Airbnb.

At its core, blockchain is a network of computers, all of which must approve a transaction has taken place before it is recorded, in a “chain” of computer code. As with bitcoin — the first application of the technology, applied to money — cryptography is used to keep transactions secure and costs are shared among those in the network. The details of the transfer are recorded on a public ledger that anyone on the network can see.

In the present system a central ledger is likely to act as the custodian of that information. But on a blockchain the information is transparently held in a shared database, without a single body acting as middleman. Advocates argue that trust is increased among the parties, as there is no possibility for abuse by someone in a dominant position.
The lack of a central authority is the very feature of bitcoin that provoked consternation among traditional financial institutions, most of whom gave it a wide berth. The wisdom of that seemed to be borne out when the crypto currency became bogged down in scandals ranging from its links to drugs money in the now-defunct black market website Silk Road to the disappearance of client assets at the collapsed bitcoin exchange Mt Gox.
 
Yet almost every big financial services institution has now overcome that initial suspicion. And the technology has swung from being a weapon wielded against the banks to being heralded as their ultimate back-office makeover, a bitter blow to the libertarians who conceived the idea of the blockchain to circumvent the global banking system.
 
“Suits are replacing hoodies and ripped jeans at blockchain conferences,” says Mark Buitenhek, head of transaction services at Dutch bank ING, which has hired a team of specialists to examine ways of using the technology to increase speed and cut costs in payments and trade finance.

Experiments, initially conducted in secret, have begun in earnest over the past year.

The desire to make a success of the technology, also described as a “distributed ledger”, is huge. It offers major rewards: cutting out inefficient banking intermediaries could save billions for consumers and the financial services industry, enthusiasts claim.

151103-blockchain bitcoin technology banking fintech FT
The technology could cut banks’ infrastructure costs for cross-border payments, securities trading and regulatory compliance by $15bn-$20bn a year from 2022, according to a recent report by Spanish bank Santander, management consultancy Oliver Wyman and venture capital investor Anthemis.
 
“In lots of areas it looks like the blockchain will work and it is easy to see how it could revolutionise finance,” says Rhomaios Ram, head of product management at Deutsche Bank’s global transaction banking division. “T he speed of execution is so much faster for securities settlement. [And] you can see how it could reduce the capital, that banks have to hold, against each trade.”

For big banks, scrambling to modernise their often outdated IT systems in the face of pressure from regulators, digital challengers and cyber criminals, blockchain represents an opportunity to rethink much of what they do.

The ability of the technology to provide an unforgeable record of identity, including the history of an individual’s transactions, is one area being eagerly explored. Intermeshing records could prove highly useful, insurers believe, in cross-checking an individual’s actions.

“If you have a secure distributed ledger it could be used to store validated ‘know your customer’ data on individuals or companies,” says David Grace, global financial crime leader at PwC, the professional services firm. “It’s a potentially global application that could provide more security over identity data and where that data are stored.”
 
Governments are also investigating its potential: Honduras is using blockchain to handle land titles while the Isle of Man has begun testing the technology with a registry of companies on the island. Longer term, a tamper-proof ledger could be used to hold medical records or develop transparent electoral voting systems.

Banking on the future
While they understand its potential, many financial institutions are still trying to work out whether blockchain technology offers a cost-cutting opportunity or represents a margin-eroding threat that could put them out of business. Banks are taking a variety of approaches in their search for answers.
Some have developed in-house models, such as Citigroup’s creation of Citicoin, a digital currency being tested in the bank’s laboratory. Others have chosen to invest in a specialist: Goldman Sachs led a $50m funding round for Circle Internet Financial, which aims to use bitcoin to handle consumer payments.

A third route has been to find a partner. Commonwealth Bank of Australia has teamed up with open source software provider Ripple to build a blockchain system for payments between its subsidiaries. Some banks, like Barclays and UBS, are working with blockchain start-ups through a technology incubator or accelerator programme.

UBS has a team of eight working in London’s Canary Wharf alongside start-ups in what it calls its Level 39 incubator — they graduated to the 42nd floor as the project grew. The collaboration, to investigate bond trading and the creation of its own currency, exposes a major problem that financial institutions are grappling with: whether membership of a distributed ledger network should be invitation only, and therefore more controlled, or not.

Bitcoin’s open source blockchain, described as a “permissionless” system, means it is decentralised and open to anyone. UBS and Microsoft are both working with blockchain start-up Ethereum, which runs a similar open source technology, and allows for the smart contracts that can execute trades automatically.

But many in banking, wary of losing their grip over operations or of upsetting regulators, see the future in closed, or permissioned-only, networks.

Almost two dozen of the world’s largest banks, including JPMorgan, UBS and Barclays, have thrown their weight behind R3 CEV, a start-up venture, to set up a private blockchain open only to invited participants who between them maintain and run the network. It forms part of an effort to build an industry-wide platform to standardise use of the technology.
 
“This isn’t going to happen with everyone working on their own: it’s got to be collaborative,” argues Hyder Jaffrey, head of the blockchain team at UBS.

There are about 300 technology start-ups, mostly in the US and UK, developing ideas for how to make blockchain work for financial services, according to PwC. Many of them are run by former senior executives at big banks, for example Blythe Masters, formerly from JPMorgan and now leading the blockchain start-up Digital Asset Holdings.
“You should be taking this technology as seriously as you should have been taking the development of the Internet in the early 1990s,” she told a recent audience. “It’s analogous to email for money.”
Venture capital has poured into the sector according to Coindesk, a bitcoin trade publication, with an estimated $462m committed between January and September this year, double the amount raised in the same period of 2014.

A question of security
Amid the fervour there is a recognition that it will be between two and five years before real-world, practical applications emerge. The technology will have to overcome serious hurdles to prove itself to be robust and secure and will need to win regulatory backing.

“The question in the end is how safe is all of this and would you put your life savings on the blockchain?” says ING’s Mr Buitenhek. “What do regulators and central banks do about it and can banks and regulators guarantee it?”

Vitaly Kamluk, principal security researcher at Kaspersky Lab, which advises clients on digital security, argues that the decentralised nature of distributed ledger technology has still to be reconciled with how such databases can be maintained cleanly and securely.

“The problem with malicious actors can be quite easily solved when it’s a centralised technology,” he says. “[But] this is yet to be solved in cases of decentralised architectures where each participant has equal rights and cannot enforce a sole decision.”
In June, the US Securities and Exchange Commission agreed a $20,000 settlement with California’s Sand Hill Exchange for offering trading in derivatives linked to private Silicon Valley companies, using the blockchain for settlement. The SEC ruled that Sand Hill was “illegally offering complex derivative products to retail investors”.

Other reactions have been warmer: the Bank of England is studying the technology and said in a recent paper that “it may be possible in the future — in theory, at least — for the existing infrastructure of the financial system to be gradually replaced by a variety of distributed systems”.
The technology is already handling a brisk business. On an average day more than 120,000 transactions are added to bitcoin’s blockchain, representing about $75m exchanged, according to blockchain.info. There are now 380,000 blocks; the ledger weighs in at nearly 45 gigabytes.
But it still has a long way to go before it can prove itself in the world of finance. For instance, it is not yet clear that the technology can be scaled up in an efficient enough way to meet the challenge.
“There was some hype six to nine months ago when you had to be talking about the blockchain,” says Didier Valet, head of corporate and investment banking at France’s Société Générale, which recently signed up to the R3 CEV venture. “[But] the jury is still out as to whether it will be revolutionary or not.”

Publication does not imply endorsement of views by the World Economic Forum.
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Author: The Financial Times covers, comments and analyses the latest UK and international business, finance, economic and political news.
Image: An illustration picture shows a projection of binary code on a man holding a laptop computer. REUTERS/Kacper Pempel. 

Re-inventing Cloud with Blockchains

by Mike Gault
                   
It's the year 2025 and it has been a stunning week in the world of computing.  

Larry Parallelogram, the CEO of Avogadro Corporation, the world’s largest computing company, recently announced that 500 of the  Fortune 500 have completed the migration of all mission critical processes to Avogadro’s compute platform, BlockCloud. 

This announcement, coming exactly one year after the bankruptcy of former computing giants IBM and HP, has reinforced the dominance of Avogadro in the Enterprise compute market. When asked to reflect on the success of BlockCloud, Parallelogram stated “It can all be traced back to a day in 2010 when I met the CEO of an Estonian company, now long retired, who kept going on about hash-functions….” 
 
Over the last ten years two of the most important technologies that have seen widespread adoption have been virtualization and Bitcoin. Virtualization paved the way for cloud computing and the Bitcoin protocol has the potential to reinvent finance using cryptographic building blocks called blockchains. 
 
Strangely, no one has put the two (Cloud and blockchains) together. If they did they would realize that together they would the solve the thorniest problem for Enterprise CIOs, namely “how do I comply with the law and trust my mission critical processes to an outsourced vendor who has little if any accountability?” 

Block Chains

Bitcoin relies heavily on the blockchain, a public “ledger” of every transaction that has ever taken place that is distributed to the edge of the network.  The key idea is that there is no centralized authority that is responsible for saying what is true or what is false, rather multiple distributed parties come to consensus, that consensus is entered into the ledger which thereafter can be accessed by anyone in the future. It is computationally infeasible for a single actor (or anything less that majority consensus) to go back and modify history. 

The Cloud as a Data Logistics Platform

What do consumers of cloud computing care about?
What do they want to know is true?
What would be the equivalent of a blockchain transaction in the cloud?

If we position the cloud as a giant logistics platform for data, then we can think of a transaction as the transport or processing of data. Data enters in to the cloud (network), it is processed (compute) and then is either returned to a consumer or kept for re-use at a later date (storage).

CIOs want a VERIFIABLE data supply chain

If you ask CIOs what they need to move their mission critical processes to the cloud then you will  hear terms like “accountability, reliability, compliance, security, verifiability, auditability, acceptance of liability” etc. in other words they demand that there is a secure supply chain and that every step in that supply chain can be verified in real-time and when things go wrong it is possible to figure out what went wrong and that there is someone who can be held accountable.” 
 
Today not a single cloud vendor can say this. It also shows the opportunity; if such a platform could be built and the concerns of Enterprise CIOs could be satisfied then the entire global enterprise IT budget would be up for grabs. 
 
 

Building a BlockCloud

In principle such as system can be easily envisioned. The  blockchain would consist of data transactions, an example of which would be an application being uploaded at a specific time by a specific entity. Afterwards this cannot be denied by the entity that uploaded the application and users of that application can verify the integrity, time and provenance of that particular application using the blockchain. Everything, that happens to data, whether transport, processing or storage of data are also transactions and are entered into the blockchain.

Afterwards what happened to data, who accessed the data, where it went and how that data was governed can be verified by anyone who has access to the blockchain. In essence the blockchain freezes the compute platform in time and with appropriate monitoring users of the platform can verify that the platform is in the correct state in real-time. 
 
Such a system would give complete traceability, accountability and transparency for the cloud, entities who are either using or administrating the cloud can be held responsible for their actions, regulators get to audit all processes and everyone involved can verify what happened when.
 
Of course a reasonable question to ask would be whether such as system could be built in reality. Even a modest petabyte cloud easily implies billions of data transactions every second that would need to be entered into the blockchain and distributed out to the edge. The implied network, storage and compute requirements would make it impossible to scale.

Right?  

Now here's a thought - imagine if that block chain wasn't just for one cloud - but for all clouds, and all data - every transport, compute and storage of data across all networks in the world. Imagine what such as a system would imply for accountability and transparency for global society. It would transform our society from one that is trust based to one that is truth based, i.e. humans can choose to trust each other, but they can also prove what happened using the blockchain.
 
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