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Minimizing inter-cluster interference by self-reorganizing MAC allocation in sensor networks

机译:通过自我重组传感器网络中的MAC分配来最大程度地减少集群间干扰

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This paper presents a Self-Reorganizing Slot Allocation (SRSA) mechanism for TDMA based Medium Access Control (MAC) protocols in wireless sensor networks. With TDMA, a node can achieve significant energy savings by remaining active only during allocated slots for transmissions and receptions. In multi-cluster networks, it is often necessary for nodes to use either CDMA or FDMA for preventing interference across neighbor clusters. The goal of this paper is to provide an alternative design that can reduce inter-cluster TDMA interference without having to use spectrum expensive CDMA or FDMA. The primary contribution of this paper is to demonstrate that with adaptive slot allocation, it is possible to reduce such interference under low loading conditions, which is often the casefor sensor networks with monitoring applications. The second contribution is to design a feedback based adaptive allocation protocol that can significantly reduce those interferences without relying on any global synchronization mechanisms. We present the design of SRSA and provide a simulation based characterization of the protocol in comparison with TDMA-over-CDMA, TDMA with random slot allocation and CSMA MAC protocols. The results indicate that with moderate cluster overlapping and low traffic loading, SRSA can significantly reduce inter-cluster TDMA interference while delivering TDMA-over-CDMA like energy efficiency, at the cost of higher delivery latency. Assuming its low complexity and narrow-band operation, SRSA can be an ideal sensor MAC protocol for applications that can tolerate relatively larger delivery latency but not frequent packet drops.
机译:本文提出了一种用于无线传感器网络中基于TDMA的媒体访问控制(MAC)协议的自重组时隙分配(SRSA)机制。使用TDMA,节点仅通过在分配的发送和接收时隙期间保持活动状态,即可节省大量能源。在多群集网络中,节点经常需要使用CDMA或FDMA来防止跨相邻群集的干扰。本文的目的是提供一种替代设计,该设计可以减少群集间TDMA干扰,而不必使用频谱昂贵的CDMA或FDMA。本文的主要贡献是证明,通过自适应时隙分配,可以减少低负载条件下的此类干扰,这对于具有监控应用的传感器网络通常是这种情况。第二个贡献是设计一种基于反馈的自适应分配协议,该协议可以在不依赖任何全局同步机制的情况下显着减少那些干扰。与CDMA上的TDMA,具有随机时隙分配的TDMA和CSMA MAC协议相比,我们提出了SRSA的设计并提供了基于仿真的协议特征。结果表明,通过适度的群集重叠和低流量负载,SRSA可以显着减少群集间TDMA干扰,同时提供TDMA-over-CDMA之类的能量效率,但以更高的传递延迟为代价。假设其低复杂度和窄带操作,SRSA可以成为理想的传感器MAC协议,适用于可以承受相对较大的传递延迟但不会频繁丢包的应用。

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