HS-Sift: a Hybrid Spatial Correlation-based MAC for Event-driven Wireless Sensor Networks

Ming Zhao, Zhigagng Chen, Zhihui Ge, Lianmin Zhang
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引用次数: 3

Abstract

Data transmitted in large scale dense wireless sensor networks (WSN) is often highly spatial correlated, and filtering out the spatial redundancy has been proved to be effective in energy conserving. At the same time, according to the results of Min Dong, different MAC mechanisms should be applied to different SNR regimes. But no existing MAC schemes design exploiting spatial correlation take this into consideration. This paper tried to seamlessly adapt the MAC behavior between the above two medium access schemes in the process of exploiting spatial correlation. The design, implementation and performance evaluation of a hybrid MAC protocol, called HS-Sift, is presented in this paper. HS-Sift divided the entire sensing region into three sub-areas and applied different MAC mechanisms to each part. Under the proposed scheme, sensor nodes around the sensing region border sleep most of the time, sensor nodes near the event site are carefully scheduled to achieve high channel utilization and sensor nodes lie between competing for the shared channel with different transmitting probability and backoff time. Extensive simulation has been done to verify the effectiveness of the proposed scheme in terms of energy consumption, transmission delay while ensuring a maximum reconstruction distortion requirement.
HS-Sift:用于事件驱动无线传感器网络的混合空间相关MAC
在大规模密集无线传感器网络(WSN)中传输的数据往往具有高度的空间相关性,过滤掉空间冗余已被证明是有效的节能措施。同时,根据闵东的研究结果,不同的MAC机制应该适用于不同的信噪比。但是现有的利用空间相关性设计的MAC方案都没有考虑到这一点。本文试图在利用空间相关性的过程中,无缝地适应上述两种介质接入方案之间的MAC行为。介绍了一种名为HS-Sift的混合MAC协议的设计、实现和性能评估。HS-Sift将整个感知区域划分为三个子区域,每个子区域采用不同的MAC机制。在该方案中,传感区域边界附近的传感器节点大部分时间处于休眠状态,靠近事件站点的传感器节点被精心调度以获得较高的信道利用率,传感器节点以不同的发送概率和退避时间竞争共享信道。大量的仿真验证了所提方案在保证最大重构失真要求的同时,在能耗、传输延迟方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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