MoneroResearch.info

MoneroResearch.info hosts a collection of research papers relevant to improving Monero, powered by the WIKINDX open source software.

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Wijaya, D. A., Liu, J., Steinfeld, R., & Liu, D. 2018, Monero ring attack: Recreating zero mixin transaction effect. Paper presented at 2018 17th IEEE international conference on trust, security and privacy in computing and communications/12th IEEE international conference on big data science and engineering (TrustCom/BigDataSE).
Added by: Jack 2023-01-20 18:34
Tram`er, F., Boneh, D., & Paterson, K. 2020, Remote Side-Channel attacks on anonymous transactions. Paper presented at 29th USENIX security symposium (USENIX security 20).
Last edited by: Jack 2023-01-20 18:29
Purkovic, S., Mekic, E., Kuk, K., & Gostimirovic, L. (2021). Empirical analysis of silent mining operation in the monero system. Studies in Informatics and Control, 30(4), 99–108.
Last edited by: Jack 2023-01-20 18:21
Liu, Q., Liu, Z., Long, Y., Liu, Z., Sui, Z., & Sun, S., et al. 2019, Making monero hard-to-trace and more efficient. Paper presented at 2019 18th IEEE International Conference On Trust, Security And Privacy In Computing And Communications/13th IEEE International Conference On Big Data Science And Engineering (TrustCom/BigDataSE).
Last edited by: Jack 2023-01-20 18:12
Leevik, A., Beliaev, V., Stasenko, B., Davydov, V., & Bezzateev, S. 2020, Review and analysis of the classical and post-quantum ring signature algorithms. Paper presented at 2020 12th International Congress on Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT).
Last edited by: Jack 2023-01-20 18:12
Gugger, J. 2020. Bitcoin-monero cross-chain atomic swap. [Cryptology ePrint Archive, Paper 2020/1126].
Last edited by: Jack 2023-01-20 18:09
Chator, A., & Green, M. 2018, How to squeeze a crowd: Reducing bandwidth in mixing cryptocurrencies. Paper presented at 2018 IEEE European Symposium on Security and Privacy Workshops.
Last edited by: Jack 2023-01-20 18:05
Bhambhwani, S., Delikouras, S., Korniotis, G. M., & others. 2019. Do fundamentals drive cryptocurrency prices?.
Last edited by: Jack 2023-01-20 18:00
Azad, B. A. 2018. Evaluating the effectiveness of javascript crypto miner blocker browser extensions. StonyBrook University.
Last edited by: Jack 2023-01-20 17:59
Goodell, B., Noether, S., & Blue, A. (2019). Concise linkable ring signatures and forgery against adversarial keys. Cryptology ePrint Archive, Paper 2019/654,
Last edited by: Jack 2023-01-20 17:53
Fanti, G., Venkatakrishnan, S. B., Bakshi, S., Denby, B., Bhargava, S., & Miller, A., et al. (2018). Dandelion++ lightweight cryptocurrency networking with formal anonymity guarantees. Proceedings of the ACM on Measurement and Analysis of Computing Systems, 2(2), 1–35.
Last edited by: Jack 2023-01-20 17:44
Estensen, H. A. 2018. A comparison of monero and zcash.
Last edited by: Jack 2023-01-20 17:40
Erg"un, Z. C., & KARABIYIK, B. K. Forecasting monero prices with a machine learning algorithm. Eskic{s}ehir Osmangazi "Universitesi .Iktisadi ve .Idari Bilimler Dergisi, 16(3), 651–663.
Last edited by: Jack 2023-01-20 17:38
Christensen, S. 2018. a comparative study of privacy-preserving cryptocurrencies: monero and zcash. University of Birmingham.
Last edited by: Jack 2023-01-20 17:36
Bunz, B., Bootle, J., Boneh, D., Poelstra, A., Wuille, P., & Maxwell, G. 2018, Bulletproofs: Short proofs for confidential transactions and more. Paper presented at 2018 IEEE Symposium on Security and Privacy (SP).
Last edited by: Jack 2023-01-20 17:33
Rucknium, R. Fully specified estimation plan for optimal static parametric estimation of arbitrary distributions (ospead) public version. Monero Research Lab.
Last edited by: Jack 2023-01-20 04:31
ACK-J, A.-J. 2022. Lord of the rings: an empirical analysis of monero’s ring signature resilience to artificially intelligent attacks. Multidisciplinary Academic Grants in Cryptocurrencies.
Last edited by: Jack 2023-01-20 04:16
Open letter to fincen’s proposed amendment of the bsa.October 24 2020. FinCEN.
Last edited by: Jack 2023-01-20 03:41
Usa v. lichtenstein et al.February 7 2022. US Dept. of Justice.
Last edited by: Jack 2023-01-20 03:41
Vijayakumaran, S. 2021. Analysis of cryptonote transaction graphs using the dulmage-mendelsohn decomposition.
Last edited by: Jack 2023-01-18 01:02
Seguias, B. E. K. 2018. Monero’s building blocks part 10 of 10--stealth addresses.
Last edited by: Jack 2023-01-18 00:44
Seguias, B. E. K. 2018. Monero’s building blocks part 9 of 10--ringct and anatomy of monero transactions.
Last edited by: Jack 2023-01-18 00:44
Seguias, B. E. K. 2018. Monero’s building blocks part 8 of 10--introduction to pedersen commitments and confidential transactions.
Last edited by: Jack 2023-01-18 00:43
Seguias, B. E. K. 2018. Monero’s building blocks part 7 of 10--multilayered linkable spontaneous anonymous group (mlsag) signature scheme.
Last edited by: Jack 2023-01-18 00:43
Seguias, B. E. K. 2018. Monero’s building blocks part 6 of 10--linkable spontaneous anonymous group (lsag) signature scheme.
Last edited by: Jack 2023-01-18 00:42
Seguias, B. E. K. 2018. Monero’s building blocks part 5 of 10--cryptonote’s linkable ring signature scheme.
Last edited by: Jack 2023-01-18 00:41
Seguias, B. E. K. 2018. Monero’s building blocks part 4 of 10--herranz & saez generic ring signature scheme [1].
Last edited by: Jack 2023-01-18 00:40
Seguias, B. E. K. 2018. Monero’s building blocks part 3 of 10--introduction to ring signatures.
Last edited by: Jack 2023-01-18 00:40
Seguias, B. E. K. 2018. Monero’s building blocks part 2 of 10--pointcheval & stern’s generic signature scheme.
Last edited by: Jack 2023-01-18 00:39
Seguias, B. E. K. 2018. Monero’s building blocks part 1 of 10--prerequisites.
Last edited by: Jack 2023-01-18 00:38
Aziz, A. B. A., Ngah, S. B., Dun, Y. T., & Bee, T. F. (2020). Coinhive’s monero drive-by crypto-jacking. IOP Conference Series: Materials Science and Engineering, 769(1), 12065.
Last edited by: Jack 2023-01-18 00:05
Moreno-Sánchez, P., Blue, A., Le, D. V., Noether, S., Goodell, B., & Kate, A. 2020, Dlsag: Non-interactive refund transactions for interoperable payment channels in monero. Paper presented at Financial Cryptography and Data Security.
Last edited by: Jack 2023-01-18 00:01
Syracuse, D., Boehm, J., & Lundgren, N. (2022). Anti-money laundering regulation of privacy enabling cryptocurrencies.
Last edited by: Jack 2023-01-08 16:44
Macias, & Siabi, Y. E. Security analysis of monero’s peer-to-peer system.
Last edited by: Jack 2023-01-08 14:45
Möser, M. (2022). Cryptocurrency privacy in practice. Unpublished Ph.D. Dissertation, Princeton University.
Added by: Rucknium 2023-01-08 03:54
Biryukov, A., & Tikhomirov, S. (2019). Security and privacy of mobile wallet users in bitcoin, dash, monero, and zcash. Pervasive and Mobile Computing, 59, 101030.
Last edited by: Jack 2023-01-08 03:27
Campanelli, M., Hall-Andersen, M., & Kamp, S. H. 2022. Curve trees: Practical and transparent zero-knowledge accumulators. [Cryptology ePrint Archive, Paper 2022/756].
Last edited by: Rucknium 2022-12-29 16:41
Hoenisch, P., Mazumdar, S., Moreno-Sánchez, P., & Ruj, S. 2022. Lightswap: An atomic swap does not require timeouts at both blockchains. [Cryptology ePrint Archive, Paper 2022/1650].
Last edited by: Rucknium 2022-12-13 19:02
Sharma, P. K., Gosain, D., & Diaz, C. 2022. On the anonymity of peer-to-peer network anonymity schemes used by cryptocurrencies. arXiv.
Added by: Rucknium 2022-12-13 19:00
Cao, T., Yu, J., Decouchant, J., Luo, X., & Verissimo, P. 2020, Exploring the monero peer-to-peer network. Paper presented at Financial Cryptography and Data Security.
Added by: Rucknium 2022-12-13 18:56
Grunspan, C., & Perez-Marco, R. 2022. Ping-pong swaps. arXiv.
Added by: Rucknium 2022-12-02 16:36
Yi, X., Wu, D., Jiang, L., Fang, Y., Zhang, K., & Zhang, W. 2022, An empirical study of blockchain system vulnerabilities: Modules, types, and patterns. Paper presented at Proceedings of the 30th ACM Joint European Software Engineering Conference and Symposium on the Foundations of Software Engineering.
Added by: Rucknium 2022-12-02 16:31
Zhaolu, T., Wan, Z., & Wang, H. 2022. Division of regulatory power: Collaborative regulation for privacy-preserving blockchains. [Cryptology ePrint Archive, Paper 2022/1634].
Added by: Rucknium 2022-12-02 16:10
Liao, Y.-C., Tso, R., Liu, Z.-Y., & Tseng, Y.-F. 2022, Blockchain-based confidential payment system with controllable regulation. Paper presented at Information Security Practice and Experience.
Added by: Rucknium 2022-12-02 16:05
Teng, D., Yao, Y., Wang, Y., Zhou, L., & Huang, C. 2022, An sm2-based traceable ring signature scheme for smart grid privacy protection. Paper presented at Wireless Algorithms, Systems, and Applications.
Added by: Rucknium 2022-12-02 16:03
Thyagarajan, S. A., Malavolta, G., Schmid, F., & Schröder, D. 2022, Verifiable timed linkable ring signatures for scalable payments for monero. Paper presented at Computer Security -- ESORICS 2022.
Added by: Rucknium 2022-12-02 15:59
Fanti, G., Venkatakrishnan, S. B., Bakshi, S., Denby, B., Bhargava, S., & Miller, A., et al. (2018). Dandelion++: Lightweight cryptocurrency networking with formal anonymity guarantees. Proc. ACM Meas. Anal. Comput. Syst. 2(2).
Added by: Rucknium 2022-10-22 20:53
Hou, C., Zhou, M., Ji, Y., Daian, P., Tram`er, F., & Fanti, G., et al. 2021, SquirRL: Automating attack analysis on blockchain incentive mechanisms with deep reinforcement learning. Paper presented at Proceedings 2021 Network and Distributed System Security Symposium.
Added by: Rucknium 2022-10-22 20:50
Tang, W., Wang, W., Fanti, G., & Oh, S. (2020). Privacy-utility tradeoffs in routing cryptocurrency over payment channel networks. Proc. ACM Meas. Anal. Comput. Syst. 4(2).
Last edited by: Rucknium 2022-10-22 20:37
Klinec, D., & Matyas, V. 2020, Privacy-friendly monero transaction signing on a hardware wallet. Paper presented at ICT Systems Security and Privacy Protection.
Added by: Rucknium 2022-10-22 19:45
WIKINDX 6.5.0 | Total resources: 161 | Username: -- | Bibliography: WIKINDX Master Bibliography | Style: American Psychological Association (APA)