Green Proxy-Based Approaches for BitTorrent

Sena Cebeci, Öznur Özkasap, G. Anastasi
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Abstract

Energy efficiency in P2P systems has become a prominent issue due to significant portions of the Internet traffic devoted to P2P protocols. In this paper, we address the approaches for energy efficiency in BitTorrent Protocol. First, we provide a classification of the existing energy efficient BitTorrent studies, and then propose multi-proxy and private proxy approaches to minimize energy consumption. We develop energy cost formulations for our proposed protocols as well as the legacy BitTorrent. The performance of multi-proxy and private proxy BitTorrent is analyzed through a comprehensive set of simulations performed on Peersim for the energy consumption and average download time metrics. For the multi-proxy protocol, we investigate the effect of increasing the number of proxies on the overlay. We also present preliminary experimental results on large-scale scenarios revealing that the proxy-based schemes reduce the energy consumption up to 80% without any performance degradation in comparison to the legacy BitTorrent.
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基于绿色代理的BitTorrent方法
P2P系统的能源效率已经成为一个突出的问题,因为互联网流量的很大一部分致力于P2P协议。在本文中,我们讨论了在BitTorrent协议中提高能效的方法。首先,我们对现有的高效节能的BitTorrent研究进行了分类,然后提出了多代理和私有代理方法,以最大限度地减少能源消耗。我们为我们提出的协议以及遗留的BitTorrent开发能源成本公式。通过在Peersim上进行的一组综合模拟,分析了多代理和私有代理BitTorrent的性能,包括能耗和平均下载时间指标。对于多代理协议,我们研究了增加代理数量对覆盖的影响。我们还提供了大规模场景的初步实验结果,表明与传统的BitTorrent相比,基于代理的方案减少了高达80%的能耗,而没有任何性能下降。
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