Notice of Violation of IEEE Publication Principles - Mitigating distributed denial of service attacks in multiparty applications in the presence of clock drifts

P. Malathi · 2013 Fourth International Conference on Computing, Communications and Networking Technologies (ICCCNT) · 2013

Notice of Violation of IEEE Publication Principles"Mitigating Distributed Denial of Service Attacks in Multiparty Applications in the Presence of Clock Drifts"by P. Malathiin the Proceedings of the Fourth International Conference on Computing, Communications and Networking Technologies (ICCCNT), July 2013After careful and considered review of the content and authorship of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE’s Publication Principles.This paper is a duplication of the original text from the papers cited below. The original text was copied without attribution (including appropriate references to the original author(s) and/or paper titles) and without permission.Due to the nature of this violation, reasonable effort should be made to remove all past references to this paper, and future references should be made to the following articles:"Mitigating Distributed Denial of Service Attacks in Multiparty Applications in the Presence of Clock Drifts"by Zhang Fu, Marina Papatriantafilou, and Philippas Tsigasin the Proceedings of the IEEE Symposium on Reliable Distributed Systems (SRDS), October 2008, pp. 63 – 72and"Mitigating Distributed Denial of Service Attacks in Multiparty Applications in the Presence of Clock Drifts"by Zhang Fu, Marina Papatriantafilou, and Philippas Tsigasin IEEE Transactions on Dependable and Secure Computing, Volume 9, Issue 3, May 2012 pp 401 – 413This is a network based application, while transferring file from client to server attackers may hack the files. Internet grows rapidly since it was created. With this network, users can share their information. The use of such networks had a tremendous growth. Meanwhile, attacks to such networks also have increased. There are several types of such attacks. An attacker can possibly launch a DoS attack by studying the flow or path of network. Earlier solutions for this problem are based on port-hopping between single pair of processes which are synchronous. Adversaries have the ability to identify open ports and launch directed attacks to those ports. This problem is named as Port-Hopping. The Solution proposed in this paper extend port-hopping to support multiparty applications. The server communicate with multiple clients in a port-hopping manner without the need for group synchronization. The solutions are simple, based on each client interacting with the server independently of the other clients, without the need of acknowledgments or time server

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