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Reliability tradeoffs for energy efficient wireless networks

机译:节能无线网络的可靠性权衡

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A complex wireless deployment under realistic scenario is prone to failures and it becomes very hard to determine when to stop retransmitting a message in order to ensure proper delivery. In this paper, a simple effective link-attribute estimator is proposed that is capable of identifying the quality of communication between neighboring mobile devices while maintaining the scalability. By relying on our link-quality estimator, a maximum number of attempts is computed which (probabilistically) ensures the message delivery while maintaining energy-efficiency. Through appropriate adjustments, our estimator is capable of obtaining the bounds on the number of retransmission attempts required to increase the message delivery ratio. This enables wireless devices to establish a threshold on the number of transmission attempts, thereby avoiding those retransmissions that would only result in wasted energy. Such dynamic threshold helps enforce at least a minimum number of transmission. Simulations prove the effectiveness of our LQ estimator with respect to energy efficiency and message delivery reliability. Results indicate that an acceptable message delivery ratio can be maintained while increasing the overall energy efficiency.
机译:在现实情况下进行复杂的无线部署很容易发生故障,并且很难确定何时停止重新传输消息以确保正确传递。在本文中,提出了一种简单有效的链路属性估计器,该估计器能够在保持可伸缩性的同时识别相邻移动设备之间的通信质量。通过依靠我们的链路质量估算器,可以计算出最大尝试次数,从而最大程度地(概率上)确保了消息传递并同时保持了能源效率。通过适当的调整,我们的估算器能够获得增加消息传递比率所需的重传尝试次数的界限。这使无线设备能够建立传输尝试次数的阈值,从而避免那些只会导致能量浪费的重传。这样的动态阈值有助于至少执行最小数量的传输。仿真证明了我们的LQ估计器在能效和消息传递可靠性方面的有效性。结果表明,在提高总体能源效率的同时,可以保持可接受的消息传递比率。

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