Practical multi-candidate election system
Proceedings of the twentieth annual ACM symposium on Principles of distributed computing
A verifiable secret shuffle and its application to e-voting
CCS '01 Proceedings of the 8th ACM conference on Computer and Communications Security
An Efficient Scheme for Proving a Shuffle
CRYPTO '01 Proceedings of the 21st Annual International Cryptology Conference on Advances in Cryptology
PKC '01 Proceedings of the 4th International Workshop on Practice and Theory in Public Key Cryptography: Public Key Cryptography
A Verifiable Secret Shuffle of Homomorphic Encryptions
PKC '03 Proceedings of the 6th International Workshop on Theory and Practice in Public Key Cryptography: Public Key Cryptography
A robust and verifiable cryptographically secure election scheme
SFCS '85 Proceedings of the 26th Annual Symposium on Foundations of Computer Science
Helios: web-based open-audit voting
SS'08 Proceedings of the 17th conference on Security symposium
A secure and optimally efficient multi-authority election scheme
EUROCRYPT'97 Proceedings of the 16th annual international conference on Theory and application of cryptographic techniques
Receipt-free mix-type voting scheme: a practical solution to the implementation of a voting booth
EUROCRYPT'95 Proceedings of the 14th annual international conference on Theory and application of cryptographic techniques
Electing a university president using open-audit voting: analysis of real-world use of Helios
EVT/WOTE'09 Proceedings of the 2009 conference on Electronic voting technology/workshop on trustworthy elections
Running mixnet-based elections with Helios
EVT/WOTE'11 Proceedings of the 2011 conference on Electronic voting technology/workshop on trustworthy elections
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Two main families of cryptographic techniques have been proposed for realizing open-audit remote elections on adversarially controlled networks: one is based on the homomorphic aggregation of encrypted ballots, while the other anonymizes ballots by transferring them through a network of mixes.