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Blockchain Peer Seminar
Unchaining the potential of Blockchain for Eurapco Partners
The implications of blockchain
for the insurance industry
& the current maturity
Vidal CHRIQUI @vidal007
#Eurapco#BlockchainSeminar2016
Turin, 13th of september 2016
Disclaimer
• This talk is assuming a basic understanding of blockchain general principles
• No public/private blockchain debate. Still most usecases described can be handled with public blockchain
• The duration of the talk does not allow to cover all the possible use cases
Introduction – The paradigm shift
The general implications
of blockchain
Toward the end of the middleman ?
• Bitcoin Blockchain made possible banking services without banks
• More generally, blockchain makes possible to transact/work
 without a middleman
 without trusting the other party – But still trusting the protocol
A high level of automation - Smartcontracts
• Smart-Contract are piece of software code that
 Run on the blockchain, a highly secure runtime
 Can execute money/asset ownership transfer depending on some conditions
• Automate some (piece of) contracts
Transparency
• Eliminate imbalance of information amongst participants
• Improves the capability of regulators (almost real monitoring) and reduces the regulatory costs
• BUT a real challenge when competitive advantage comes from information asymetry
A secure & low-cost technology
• Security
 By design – Cryptography, Game Theory, Software
 Proven by experience : Bitcoin Market cap is implicitly a 10B$ security bounty never rewarded
• Low cost transaction
Viable micropayments
• The ability to handle micro-payments with acceptable fees
• Micropayment + automation unlock new scenarios
 Machine to machine transactions, Small rewards for users or partners for each small action, etc …
The end-user is responsible of his identity
• Transacting without middle-man brings the great responsability of managing its own identity
• Many solution involving : Hardware wallets, Software wallet, Online Wallet and sometimes third party
• Digital Identity remains a critical enabler for any blockchain application
The impact on Insurance Industry
The implications of
blockchain for Insurance
Blockchain as global registry - Fraud detection & Authenticity checks
• Blockchain can be used as a global distributed registry (Property & casualty) which allows easier
verification for authenticity, ownership, date/time of purchase, etc..
• Exemple : Diamond Verification (EverLedger), national car registry ….
Customer engagment & personnal data
• Blockchain for verifying proofs of personal data
• User share his data only ONCE and the data remains under his control
• KYC use case
 Only 1 verification inter-product, inter-divisional, inter-location, inter-subsidiary, inter-consortium
blockchainblockchain
Insur
A
Insur
B
Insur
C
Partner
A
Bank
Partner
B
Elect.
Customer engagement & Loyalty programs
• Blockchain for building an universal loyalty program which allow users
 to share/trade their fidelity points
 to use their fidelity points as money at (selected) partners
Blockchain for marketplace back-office efficiency
• Inter-Insurers blockchain can bring many benefits including
 Exact redudant and secure data
 Reduced processing delays, reduced transaction costs
Automation via SmartContract
• Automation of the claim process – from submission to approval & payment
• Reduction of fraudulent claims
• Eligible for micro-insurance products like crop-insurance or weather-based insurance
Blockchain for embracing the IoT market
• Automation of damage detection, triggering the repair process & payment
• Automatic checking of the insurance policies or warranties
• Valid for cars, smart home, appliances and all IoT devices
Source : IBM Democray - ADEPT
Peer to Peer Assurance/Mutual – Total disintermediation
• Community driven
• Cash Back bonus at the end of a claimless period
• Easier and more affordable for customers
Blockchain impacts on Insurance – Use Cases overview
• The blockchain can be used
 to optimize existing product or model
 to enable new products and business models
Use Case InsureTech
example
Existing
products
or
models
Identity Management & KYC Tradle.io
Ledger of insured items Everledger
Certification of complaints history RootStock
Contract signing & MicroInsurance SafeShare
Management of sensitive (medical) data BitProof / SecuCoin
New
products
or
models
Automatic settlement of claims (SmartContracts) InsurEth
Peer to Peer Insurance FriendSurance /
DynamisApp
Crypto Mutual (SmartContract) WeKeep
State of the Art
The limitations of
the current technology
Scalability
• Number of transactions per second limited ( 5 to 7 tx/s in Bitcoin)
• Yet, this topic has a many solutions that are currently under implementation
 SideChains (Blockstream)
 Lightning Network (Bitcoin)
 Raiden (Ethereum)
Speed
• High security in a P2P network brings latency and the necessity of a blockchain & confirmation time
 In bitcoin, Block time is 10 minutes & confirmation time is 60 minutes
• Most solutions are using an off-chain approach (which is not blocking for most use cases)
Energy Efficiency & Proof of Work
• All verifications are done by all the nodes of the network which make a lot of energy consumed
• Yet, the cost per transaction seems acceptable
• Many solutions possible as the Proof of Stake algorithm OR simpler algorithm in private blockchain
Vulnerability to the « 51% attack »
• The 51% attack can disturb the consensus outpout
• Even though the vulnerability is too expensive to be realistic and can not alter most of the data, the trust
in the system can still be altered
51%
State of the Art
Some challenges to
come for blockchain
Legal and regulatory framework
• Not clear enough regulation about
 cryptocurrencies
 the strongness of proof in front of a court
 The legal responsible (accountable) in case of any issue
User experience
• Blockchain user experience is still to be improved
 Identity management for end users
 Some edge security issues
SmartContract Security and Lessons learned from the #theDao Hack
• A very expensive lesson : 70M$ hack on theDAO ethereum smartcontract (June 2016)
• Technically the hacker has executed the contract as writen/coded
• Some lessons
 Complexity can be enemy with security
 The need for code formal verifications
Getting external data into the blockchain - Oracles
• Blockchain security principles does not allow smartcontract to call directly external data feeds
• Current solution involving oracles (« smartcontracts » exposing the data) have some limitations :
 No decentralized oracles to date, Vulnerability, Profitability, No standards
INTERNETBLOCKCHAIN
How do we get the data in ?
Enterprise ready implementations
• To date, very few vendor options for mature implementation and connectors to the entreprise data
• Still public blockchain offer the most interesting platforms for setting-up Proof of Concepts
 Bitcoin, Ethereum / Parity
Blockchain Governance
• Blockchain is not just about technology, it’s also about governance & economics
• Still some rules to be created & field tested :
 How to share the cost infrastructure ?
 How and who should handle un-resolved/rejected transaction ?
 How to keep some transaction private ?
 …..
Conclusion
Key Takeaways
Blockchain impacts strongly the Insurance Industry
• Blockchain impacts are not limited to the finance industry
• Blockchain can possibly impact all the aspects of the insurance
• A market signal that the (insurance) blockchain move is for 2016 : Metlife joins the R3CEV consortium
MetLife Inc., one of the largest insurers in the world has joined the R3-led blockchain consortium that now counts 60 of the world’s largest
financial institutions.
Insurance giant MetLife is the latest financial institution to join the financial private blockchain consortium led by New York-based startup R3.
MetLife will partner and interact with other R3 members in an effort to explore the potential application of blockchain technology in the insurance
industry. Specifically, how distributed ledgers can streamline activities such as business processing, policy administration, customer payments, new
investments management and the distribution of proceeds, a statement revealed
An unique opportunity for open-innovation
• The distributed nature of blockchain is a unique momentum
 To collaborate with industry peers to create (costs-saving) blockchain industry standards & applications
 To collaborate with new comers to create new products
Blockchain is to be explored from now - while total maturity comes
• The most relevent use cases can only be found with experimentating the blockchain approach
• Use case can already be experimented efficiently with existing public blockchains
• Experimentations should be conducted with industry peers or other industries partners
Thanks for your attention
For #blockchain news curation, you can follow me on twitter
@vidal007

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The implications of blockchain for the insurance industry - Eurapco Peer Seminar - Unchaining the potential of Blockchain

  • 1. Blockchain Peer Seminar Unchaining the potential of Blockchain for Eurapco Partners The implications of blockchain for the insurance industry & the current maturity Vidal CHRIQUI @vidal007 #Eurapco#BlockchainSeminar2016 Turin, 13th of september 2016
  • 2. Disclaimer • This talk is assuming a basic understanding of blockchain general principles • No public/private blockchain debate. Still most usecases described can be handled with public blockchain • The duration of the talk does not allow to cover all the possible use cases
  • 3. Introduction – The paradigm shift The general implications of blockchain
  • 4. Toward the end of the middleman ? • Bitcoin Blockchain made possible banking services without banks • More generally, blockchain makes possible to transact/work  without a middleman  without trusting the other party – But still trusting the protocol
  • 5. A high level of automation - Smartcontracts • Smart-Contract are piece of software code that  Run on the blockchain, a highly secure runtime  Can execute money/asset ownership transfer depending on some conditions • Automate some (piece of) contracts
  • 6. Transparency • Eliminate imbalance of information amongst participants • Improves the capability of regulators (almost real monitoring) and reduces the regulatory costs • BUT a real challenge when competitive advantage comes from information asymetry
  • 7. A secure & low-cost technology • Security  By design – Cryptography, Game Theory, Software  Proven by experience : Bitcoin Market cap is implicitly a 10B$ security bounty never rewarded • Low cost transaction
  • 8. Viable micropayments • The ability to handle micro-payments with acceptable fees • Micropayment + automation unlock new scenarios  Machine to machine transactions, Small rewards for users or partners for each small action, etc …
  • 9. The end-user is responsible of his identity • Transacting without middle-man brings the great responsability of managing its own identity • Many solution involving : Hardware wallets, Software wallet, Online Wallet and sometimes third party • Digital Identity remains a critical enabler for any blockchain application
  • 10. The impact on Insurance Industry The implications of blockchain for Insurance
  • 11. Blockchain as global registry - Fraud detection & Authenticity checks • Blockchain can be used as a global distributed registry (Property & casualty) which allows easier verification for authenticity, ownership, date/time of purchase, etc.. • Exemple : Diamond Verification (EverLedger), national car registry ….
  • 12. Customer engagment & personnal data • Blockchain for verifying proofs of personal data • User share his data only ONCE and the data remains under his control • KYC use case  Only 1 verification inter-product, inter-divisional, inter-location, inter-subsidiary, inter-consortium blockchainblockchain Insur A Insur B Insur C Partner A Bank Partner B Elect.
  • 13. Customer engagement & Loyalty programs • Blockchain for building an universal loyalty program which allow users  to share/trade their fidelity points  to use their fidelity points as money at (selected) partners
  • 14. Blockchain for marketplace back-office efficiency • Inter-Insurers blockchain can bring many benefits including  Exact redudant and secure data  Reduced processing delays, reduced transaction costs
  • 15. Automation via SmartContract • Automation of the claim process – from submission to approval & payment • Reduction of fraudulent claims • Eligible for micro-insurance products like crop-insurance or weather-based insurance
  • 16. Blockchain for embracing the IoT market • Automation of damage detection, triggering the repair process & payment • Automatic checking of the insurance policies or warranties • Valid for cars, smart home, appliances and all IoT devices Source : IBM Democray - ADEPT
  • 17. Peer to Peer Assurance/Mutual – Total disintermediation • Community driven • Cash Back bonus at the end of a claimless period • Easier and more affordable for customers
  • 18. Blockchain impacts on Insurance – Use Cases overview • The blockchain can be used  to optimize existing product or model  to enable new products and business models Use Case InsureTech example Existing products or models Identity Management & KYC Tradle.io Ledger of insured items Everledger Certification of complaints history RootStock Contract signing & MicroInsurance SafeShare Management of sensitive (medical) data BitProof / SecuCoin New products or models Automatic settlement of claims (SmartContracts) InsurEth Peer to Peer Insurance FriendSurance / DynamisApp Crypto Mutual (SmartContract) WeKeep
  • 19. State of the Art The limitations of the current technology
  • 20. Scalability • Number of transactions per second limited ( 5 to 7 tx/s in Bitcoin) • Yet, this topic has a many solutions that are currently under implementation  SideChains (Blockstream)  Lightning Network (Bitcoin)  Raiden (Ethereum)
  • 21. Speed • High security in a P2P network brings latency and the necessity of a blockchain & confirmation time  In bitcoin, Block time is 10 minutes & confirmation time is 60 minutes • Most solutions are using an off-chain approach (which is not blocking for most use cases)
  • 22. Energy Efficiency & Proof of Work • All verifications are done by all the nodes of the network which make a lot of energy consumed • Yet, the cost per transaction seems acceptable • Many solutions possible as the Proof of Stake algorithm OR simpler algorithm in private blockchain
  • 23. Vulnerability to the « 51% attack » • The 51% attack can disturb the consensus outpout • Even though the vulnerability is too expensive to be realistic and can not alter most of the data, the trust in the system can still be altered 51%
  • 24. State of the Art Some challenges to come for blockchain
  • 25. Legal and regulatory framework • Not clear enough regulation about  cryptocurrencies  the strongness of proof in front of a court  The legal responsible (accountable) in case of any issue
  • 26. User experience • Blockchain user experience is still to be improved  Identity management for end users  Some edge security issues
  • 27. SmartContract Security and Lessons learned from the #theDao Hack • A very expensive lesson : 70M$ hack on theDAO ethereum smartcontract (June 2016) • Technically the hacker has executed the contract as writen/coded • Some lessons  Complexity can be enemy with security  The need for code formal verifications
  • 28. Getting external data into the blockchain - Oracles • Blockchain security principles does not allow smartcontract to call directly external data feeds • Current solution involving oracles (« smartcontracts » exposing the data) have some limitations :  No decentralized oracles to date, Vulnerability, Profitability, No standards INTERNETBLOCKCHAIN How do we get the data in ?
  • 29. Enterprise ready implementations • To date, very few vendor options for mature implementation and connectors to the entreprise data • Still public blockchain offer the most interesting platforms for setting-up Proof of Concepts  Bitcoin, Ethereum / Parity
  • 30. Blockchain Governance • Blockchain is not just about technology, it’s also about governance & economics • Still some rules to be created & field tested :  How to share the cost infrastructure ?  How and who should handle un-resolved/rejected transaction ?  How to keep some transaction private ?  …..
  • 32. Blockchain impacts strongly the Insurance Industry • Blockchain impacts are not limited to the finance industry • Blockchain can possibly impact all the aspects of the insurance • A market signal that the (insurance) blockchain move is for 2016 : Metlife joins the R3CEV consortium MetLife Inc., one of the largest insurers in the world has joined the R3-led blockchain consortium that now counts 60 of the world’s largest financial institutions. Insurance giant MetLife is the latest financial institution to join the financial private blockchain consortium led by New York-based startup R3. MetLife will partner and interact with other R3 members in an effort to explore the potential application of blockchain technology in the insurance industry. Specifically, how distributed ledgers can streamline activities such as business processing, policy administration, customer payments, new investments management and the distribution of proceeds, a statement revealed
  • 33. An unique opportunity for open-innovation • The distributed nature of blockchain is a unique momentum  To collaborate with industry peers to create (costs-saving) blockchain industry standards & applications  To collaborate with new comers to create new products
  • 34. Blockchain is to be explored from now - while total maturity comes • The most relevent use cases can only be found with experimentating the blockchain approach • Use case can already be experimented efficiently with existing public blockchains • Experimentations should be conducted with industry peers or other industries partners
  • 35. Thanks for your attention For #blockchain news curation, you can follow me on twitter @vidal007