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Energy-Efficient Strategies for Cooperative Multichannel MAC Protocols

机译:协作多通道MAC协议的节能策略

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摘要

Distributed Information SHaring (DISH) is a new cooperative approach to designing multichannel MAC protocols. It aids nodes in their decision making processes by compensating for their missing information via information sharing through neighboring nodes. This approach was recently shown to significantly boost the throughput of multichannel MAC protocols. However, a critical issue for ad hoc communication devices, viz. energy efficiency, has yet to be addressed. In this paper, we address this issue by developing simple solutions that reduce the energy consumption without compromising the throughput performance and meanwhile maximize cost efficiency. We propose two energy-efficient strategies: in-situ energy conscious DISH, which uses existing nodes only, and altruistic DISH, which requires additional nodes called altruists. We compare five protocols with respect to these strategies and identify altruistic DISH to be the right choice in general: it 1) conserves 40-80 percent of energy, 2) maintains the throughput advantage, and 3) more than doubles the cost efficiency compared to protocols without this strategy. On the other hand, our study also shows that in-situ energy conscious DISH is suitable only in certain limited scenarios.
机译:分布式信息共享(DISH)是设计多通道MAC协议的一种新的协作方法。它通过相邻节点之间的信息共享来补偿节点丢失的信息,从而帮助节点进行决策。最近显示出这种方法可以显着提高多通道MAC协议的吞吐量。但是,对于ad hoc通信设备来说,这是一个关键问题。能源效率,尚未解决。在本文中,我们通过开发简单的解决方案来解决此问题,这些解决方案可在不影响吞吐量性能的同时降低能耗,同时最大程度地提高成本效率。我们提出了两种节能策略:原位节能的DISH(仅使用现有节点)和利他的DISH(需要使用称为利他主义者的其他节点)。我们针对这些策略比较了五种协议,并确定利他性DISH通常是正确的选择:1)节省40-80%的能量,2)保持吞吐量优势,以及3)与没有此策略的协议。另一方面,我们的研究还表明,就地能量意识型DISH仅在某些有限的情况下才适用。

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