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Public blockchains should be able to scale with respect to the number of nodes and to the transactions workload.
Forwarding state reduction for sparse mode multicast communication
Jining Tian and Gerald Neufeld · 1998
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An analysis of multicast forwarding state scalability
Tina Wong and Randy Katz · 2000
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Scalable multicast forwarding
Björn Grönvall · 2002
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Fjm: fast join mechanism for overlay multicast
Sungyean Cho and Myong-Soon Park · 2003
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Network applications of bloom filters: A survey
Andrei Broder and Michael Mitzenmacher · 2004
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Scalable ip-services enabled multicast forwarding with efficient resource utilization, July 3 2012
Rajesh I Balay, Girish Bhat, Gregory Lockwood, and Rama Krishnan Nagarajan · 2012
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Optimal false-positive-free bloom filter design for scalable multicast forwarding
János Tapolcai, József Bíró, Péter Babarczi, András Gulyás, Zalán Heszberger, and Dirk Trossen · 2014
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Scp: A computationally-scalable byzantine consensus protocol for blockchains
Loi Luu, Viswesh Narayanan, Kunal Baweja, Chaodong Zheng, Seth Gilbert, and Prateek Saxena · 2015
Earlier work this paper cites.
Securing promiscuous use of untrusted usb thumb drives in industrial control systems
Federico Griscioli and Maurizio Pizzonia · 2016
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Usbcheckin: Preventing badusb attacks by forcing human-device interaction
Federico Griscioli, Maurizio Pizzonia, and Marco Sacchetti · 2016
Cited alongside, same era.
Ouroboros: A provably secure proof-of-stake blockchain protocol
Aggelos Kiayias, Alexander Russell, Bernardo David, and Roman Oliynykov · 2017
Cited alongside, same era.
Preemptive: an integrated approach to intrusion detection and prevention in industrial control systems
E. Etchevès Miciolino, D. Di Noto, F. Griscioli, M. Pizzonia, J. Kippe, X. Clotet, G. Leòn, F.B. Kassim, D. Lund, and E. Costante · 2017
Cited alongside, same era.
Ouroboros praos: An adaptively-secure, semi-synchronous proof-of-stake blockchain
Bernardo David, Peter Gaži, Aggelos Kiayias, and Alexander Russell · 2018
Cited alongside, same era.
Omniledger: A secure, scale-out, decentralized ledger via sharding
Eleftherios Kokoris-Kogias, Philipp Jovanovic, Linus Gasser, Nicolas Gailly, Ewa Syta, and Bryan Ford · 2018
Cited alongside, same era.
Towards scaling blockchain systems via sharding
Hung Dang, Tien Tuan Anh Dinh, Dumitrel Loghin, Ee-Chien Chang, Qian Lin, and Beng Chin Ooi · 2019
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Vault: Fast bootstrapping for the algorand cryptocurrency
Derek Leung, Adam Suhl, Yossi Gilad, and Nickolai Zeldovich · 2019
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Overlay indexes: Efficiently supporting aggregate range queries and authenticated data structures in off-the-shelf databases
D. Pennino, M. Pizzonia, and A. Papi · 2019
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Pipeline-integrity: Scaling the use of authenticated data structures up to the cloud
Diego Pennino, Maurizio Pizzonia, and Federico Griscioli · 2019
Later among the works it cites.
A survey on the scalability of blockchain systems
Junfeng Xie, F Richard Yu, Tao Huang, Renchao Xie, Jiang Liu, and Yunjie Liu · 2019
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Eos: An architectural, performance, and economic analysis, 2018
Brent Xu, Dhruv Luthra, Zak Cole, and Nate Blakely · 2018
Cited alongside, same era.
Rapidchain: Scaling blockchain via full sharding
Mahdi Zamani, Mahnush Movahedi, and Mariana Raykova · 2018
Cited alongside, same era.
Blockchains meet distributed hash tables: Decoupling validation from state storage
Matteo Bernardini, Diego Pennino, and Maurizio Pizzonia · 2019
Cited alongside, same era.
Algorand: A secure and efficient distributed ledger
Jing Chen and Silvio Micali · 2019
Cited alongside, same era.
Monoxide: Scale out blockchains with asynchronous consensus zones
Jiaping Wang and Hao Wang
Cited in the paper.
Amani Altarawneh, Tom Herschberg, Sai Medury, Farah Kandah, and Anthony Skjellum · 2020
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On sharding blockchains
Ethereum wiki project · 2020
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Solutions to scalability of blockchain: A survey
Qiheng Zhou, Huawei Huang, Zibin Zheng, and Jing Bian · 2020
Closest in time.