| Akbari, E., Zhao, W., Yang, S., & Luo, X. 2020, The Impact of Block Parameters on the Throughput and Security of Blockchains. Paper presented at Proceedings of the 2020 The 2nd International Conference on Blockchain Technology. |
|
| Added by: endor 4/17/22, 9:05 PM |
|
| Akcora, C. G., Gel, Y. R., & Kantarcioglu, M. (2022). Blockchain networks: Data structures of Bitcoin, Monero, Zcash, Ethereum, Ripple, and Iota. WIREs Data Mining and Knowledge Discovery, 12(1), e1436. |
|
| Added by: Rucknium 2/23/22, 10:27 PM |
|
| Biryukov, A., & Tikhomirov, S. (2019). Security and privacy of mobile wallet users in Bitcoin, Dash, Monero, and Zcash. Pervasive and Mobile Computing, 59, 101030. |
|
| Added by: Jack Last edited by: Jack 1/8/23, 3:27 AM |
|
| Gervais, A., Karame, G. O., W"ust, K., Glykantzis, V., Ritzdorf, H., & Capkun, S. 2016, On the Security and Performance of Proof of Work Blockchains. Paper presented at Proceedings of the 2016 ACM SIGSAC Conference on Computer and Communications Security. |
|
| Added by: endor Last edited by: endor 4/17/22, 7:53 PM |
|
| Howell, A., Saber, T., & Bendechache, M. (2023). Measuring node decentralisation in blockchain peer to peer networks. Blockchain: Research and Applications, 4(1), 100109. |
|
| Added by: Rucknium 6/3/25, 4:28 PM |
|
| Jiang, P., Zhu, J., & Zhu, L. (2024). Balancing Privacy and Regulation of Cross-chain Transaction Systems via SoK-assisted Policy Enhancement. IEEE Transactions on Information Forensics and Security, 1–1. |
|
| Added by: Rucknium Last edited by: Rucknium 5/23/24, 6:01 PM |
|
| Kearney, J. J., & Perez-Delgado, C. A. (2021). Vulnerability of blockchain technologies to quantum attacks. Array, 10, 100065. |
|
| Added by: Rucknium 5/3/22, 3:13 AM |
|
| Li, Y., Weng, J., Li, M., Wu, W., Weng, J., & Liu, J.-N., et al. (2022). ZeroCross: A sidechain-based privacy-preserving Cross-chain solution for Monero. Journal of Parallel and Distributed Computing, 169, 301–316. |
|
| Added by: Rucknium 9/10/22, 7:54 PM |
|
| Lin, H., & Wang, M. (2022). Repudiable ring signature: Stronger security and logarithmic-size. Computer Standards & Interfaces, 80, 103562. |
|
| Added by: Rucknium 2/24/22, 6:04 PM |
|
| Luo, M., Zhou, J., & Yang, P. (2023). RATS: A regulatory anonymous transaction system based on blockchain. Journal of Parallel and Distributed Computing, 182, 104751. |
|
| Added by: Rucknium 1/6/24, 5:44 PM |
|
| Nikzad, A., & Mehregan, M. (2022). Techno-economic, and environmental evaluations of a novel cogeneration system based on solar energy and cryptocurrency mining. Solar Energy, 232, 409–420. |
|
| Added by: endor 4/17/22, 7:34 PM |
|
| Sarier, N. D. (2022). Privacy Preserving Biometric Authentication on the blockchain for smart healthcare. Pervasive and Mobile Computing, 86, 101683. |
|
| Added by: Rucknium 9/10/22, 7:55 PM |
|
| 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). |
|
| Added by: Rucknium Last edited by: Rucknium 10/22/22, 8:37 PM |
|
| Vries, A. D. (2020). Bitcoin’s energy consumption is underestimated: A market dynamics approach. Energy Research & Social Science, 70, 101721. |
|
| Added by: endor 4/17/22, 7:32 PM |
|
| Zhang, T., Li, B., Zhu, Y., Han, T., & Wu, Q. (2023). Covert channels in blockchain and blockchain based covert communication: Overview, state-of-the-art, and future directions. Computer Communications, 205, 136–146. |
|
| Added by: Rucknium 1/5/24, 7:23 PM |
|