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Improving computational efficiency using polynomial congestion control algorithms MIMD-Poly and PIPD-Poly in TCP/IP networks

机译:使用多项式拥塞控制算法提高计算效率MIMD-Poly和Popd-Poly中的TCP / IP网络

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This paper proposes a technique for improving the computational efficiency using the congestion control algorithms. A class of nonlinear congestion control algorithms, called polynomial congestion control algorithms is introduced. This paper initially analyses the interaction between these algorithms and other Transmission Control Protocol (TCP) congestion control algorithms in TCP/IP networks. The proposed polynomial algorithms generalize the Additive Increase and Multiplicative Decrease (AIMD) algorithms used for the TCP/IP networks. These algorithms provide additive increase and multiplicative decrease using the polynomial of the current window size. Infinite numbers of TCP-friendly polynomial algorithms could be formulated by assuming polynomial of different order. By increasing the congestion window size faster, the proposed algorithms capture the channel bandwidth more. This additional bandwidth acquired, helps to improve the throughput and hence the overall efficiency of computations to be done on the information transferred using this additional bandwidth. A wired TCP network is simulated using ns2 to study the interaction between the various TCP algorithms. The results of simulation are compared with that of the TCP variants such as TCP/Tahoe, TCP/Reno, TCP/NewReno, and TCP/Vegas. The comparison shows that the proposed algorithms improve the long-term throughput.
机译:本文提出了一种改进使用的拥塞控制算法的计算效率的技术。一类的非线性拥塞控制算法,称为多项式的拥塞控制算法被引入。本文最初分析这些算法和其他传输控制协议(TCP)的拥塞控制算法中的TCP / IP网络之间的相互作用。所提出的多项式算法概括了用于TCP / IP网络的添加剂增加和乘法减少(AIMD)算法。这些算法提供了使用当前窗口尺寸的多项式的添加增加和乘法减少。可以通过假设不同顺序的多项式来配制无限数量的TCP友好的多项式算法。通过增加拥塞窗口大小更快,该算法捕捉通道带宽。获取该附加的带宽,有助于提高吞吐量,并因此计算要对信息进行的整体效率使用该额外的带宽传送。有线网络TCP使用NS2研究各种TCP算法之间的相互作用的模拟。仿真的结果与该TCP变体,如TCP /浩,TCP /里诺,TCP / NewReno中,和TCP /拉斯维加斯比较。比较结果表明,该算法提高了长期的吞吐量。

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