Multipath virtual sink architecture for wireless sensor networks in harsh environments

Winston K.G. Seah, H. Tan
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引用次数: 38

Abstract

Wireless sensor networks are expected to be deployed in harsh environments characterized by extremely poor and fluctuating channel conditions. With the generally adopted single-sink architecture, be it static or mobile, such conditions arise due to contention near the sink as a result of multipath data delivery. The compactness of sensors with limited energy resources restricts the use of sophisticated FEC or ARQ mechanisms to improve the reliability of transmissions under such adverse conditions.We propose a novel virtual sink architecture for wireless sensor networks that mitigates the near-sink contention by defining a group of spatially diverse physical sinks. Reliability and energy efficiency is achieved through multipath data delivery to the sinks without the need for sophisticated FEC or ARQ mechanisms. This architecture is especially suitable for indoor environments, where channel conditions are harsh due to severe multipath fading, as well as emerging applications like underwater sensor networks where the predominant physical layer is acoustic communications, which is characterized by long propagation delays and severely fluctuating link conditions. We present our proposed architecture and demonstrate its efficacy using mathematical analysis.
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恶劣环境下无线传感器网络的多径虚拟汇聚体系结构
无线传感器网络预计将部署在恶劣的环境中,其特点是极其恶劣和波动的信道条件。对于通常采用的单接收器架构,无论是静态还是移动,由于多路径数据传递导致接收器附近的争用,都会出现这种情况。传感器的紧凑性和有限的能量资源限制了使用复杂的FEC或ARQ机制来提高在这种不利条件下传输的可靠性。我们为无线传感器网络提出了一种新的虚拟sink架构,通过定义一组空间上不同的物理sink来减轻近sink争用。可靠性和能源效率是通过多路径数据传输到接收器,而不需要复杂的FEC或ARQ机制。这种架构特别适用于室内环境,在室内环境中,由于严重的多径衰落,信道条件恶劣,以及水下传感器网络等新兴应用,其中主要物理层是声学通信,其特点是传播延迟长,链路条件波动严重。我们提出了我们的架构,并使用数学分析证明了它的有效性。
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