区块链的前沿论文
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Untangling Blockchain: A Data Processing View of Blockchain Systems |
Tien Tuan Anh Dinh, Rui Liu, Meihui Zhang, Gang Chen, Beng Chin Ooi, Ji Wang |
TKDE |
2018 |
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Making Sense of Blockchain Applications: A Typology for HCI |
Chris Elsden, Arthi Manohar, Jo Briggs, Mike Harding, Chris Speed, John Vines |
CHI |
2018 |
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Thunderella: Blockchains with Optimistic Instant Confirmation |
Rafael Pass, Elaine Shi |
EUROCRYPT |
2018 |
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But Why Does It Work? A Rational Protocol Design Treatment of Bitcoin |
Christian Badertscher, Juan A. Garay, Ueli Maurer, Daniel Tschudi, Vassilis Zikas |
EUROCRYPT |
2018 |
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Ouroboros Praos: An Adaptively-Secure, Semi-synchronous Proof-of-Stake Blockchain |
Bernardo David, Peter Gazi, Aggelos Kiayias, Alexander Russell |
EUROCRYPT |
2018 |
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Sustained Space Complexity |
Joël Alwen, Jeremiah Blocki, Krzysztof Pietrzak |
EUROCRYPT |
2018 |
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Simple Proofs of Sequential Work |
Bram Cohen, Krzysztof Pietrzak |
EUROCRYPT |
2018 |
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Ouroboros: A Provably Secure Proof-of-Stake Blockchain Protocol |
Aggelos Kiayias, Alexander Russell, Bernardo David, Roman Oliynykov |
CRYPTO |
2017 |
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Algorand: Scaling Byzantine Agreements for Cryptocurrencies |
Yossi Gilad, Rotem Hemo, Silvio Micali, Georgios Vlachos, Nickolai Zeldovich |
SOSP |
2017 |
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Secure High-Rate Transaction Processing in Bitcoin |
Yonatan Sompolinsky, Aviv Zohar |
Financial Cryptography |
2013 |
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A Survey of Attacks on Ethereum Smart Contracts (SoK) |
Nicola Atzei, Massimo Bartoletti, Tiziana Cimoli |
POST |
2017 |
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Detecting Ponzi Schemes on Ethereum: Towards Healthier Blockchain Technology |
Weili Chen, Weili Chen, Zibin Zheng, Jiahui Cui, Edith Ngai, Peilin Zheng, Yuren Zhou |
WWW |
2018 |
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Dissecting Ponzi schemes on Ethereum: identification, analysis, and impact |
Massimo Bartoletti, Salvatore Carta, Tiziana Cimoli, Roberto Saia |
CoRR |
2017 |
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Data mining for detecting Bitcoin Ponzi schemes |
Massimo Bartoletti, Barbara Pes, Sergio Serusi |
CoRR |
2017 |
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Analyzing the Bitcoin Ponzi Scheme Ecosystem |
Marie Vasek and Tyler Moore |
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2018 |
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大多数区块链的设计是为了保护交易的完整性,但他们不考虑交易隐私。一个区块链系统具有交易隐私是指当交易关联信息被保护,且只有参与者知道交易内容。一方面,在私有设置中,交易历史的完全透明性可能不是问题。透明性对于私有系统来说是需要的(例如财务审计),可以通过直接添加访问控制层来保护区块链数据。另一方面,在公共环境中,交易隐私的需求是由两个因素驱动的。首先,去匿名化攻击可以成功地复原出比特币网络的底层结构,甚至将比特币地址与现实世界的身份联系起来。其次,交易的可链接性会破坏货币的互换性,通过历史数据挖掘分析,可以使一些电子货币比其他电子货币更有价值。——Pro. Ooi
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区块链隐私保护研究综述 |
祝烈煌, 高峰, 沈蒙, 李艳东, 郑宝昆, 毛洪亮, 吴震 |
计算机研究与发展 |
2017 |
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Deanonymisation of Clients in Bitcoin P2P Network |
Alex Biryukov, Dmitry Khovratovich, Ivan Pustogarov |
CCS |
2014 |
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Fergal Reid, Martin Harrigan |
An Analysis of Anonymity in the Bitcoin System |
SPSN |
2013 |
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BigchainDB: a scalable blockchain database |
McConaghy, Trent, Rodolphe Marques, Andreas Müller, Dimitri De Jonghe, Troy McConaghy, Greg McMullen, Ryan Henderson, Sylvain Bellemare, and Alberto Granzotto |
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2016 |
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