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首页> 外文期刊>IEEE transactions on wireless communications >A MAC-Layer Retransmission Algorithm Designed for the Physical-Layer Characteristics of Clustered Sensor Networks
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A MAC-Layer Retransmission Algorithm Designed for the Physical-Layer Characteristics of Clustered Sensor Networks

机译:针对集群传感器网络物理层特性设计的MAC层重传算法

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We consider scenarios in which an event, such as a mobile node arriving to collect data or a data-request arriving at a node via the sensor network, initiates the collection of one packet of data from each node in the surrounding cluster of nodes. The node requesting the data broadcasts its identity and purpose to the cluster and assumes the role of clusterhead. This broadcast message is also used to synchronize all nodes in the cluster, which covers an area with a radius of several hundred meters, to within a few microseconds. We exploit this ability to synchronize the cluster to improve retransmission algorithms in CSMA/CA-based MAC protocols. The result is a retransmission algorithm that uses a synchronized, shared contention window (SSCW) that is easy to implement and results in fewer collisions than retransmission algorithms that use binary-exponential-backoff (BEB). A simple analytical approach is further proposed to optimize the size of the shared contention window. We show via analytical, numerical, and simulation results that an SSCW-based 802.11 DCF protocol performs significantly better in these scenarios we consider than both 802.15.4 (ZigBee) and BEB-based 802.11 DCF (WiFi). We also show that SSCW-based 802.11 is more fault-tolerant and fair than TDMA
机译:我们考虑这样的场景:事件(例如,移动节点到达收集数据或通过传感器网络到达节点的数据请求)启动了从周围节点集群中每个节点收集一个数据包的过程。请求数据的节点向群集广播其身份和用途,并承担群集头的角色。此广播消息还用于将群集中半径为几百米的区域中的所有节点同步到几微秒内。我们利用这种能力来同步群集,以改进基于CSMA / CA的MAC协议中的重传算法。结果是与使用二进制指数退避(BEB)的重传算法相比,该重传算法使用了易于实现的同步共享竞争窗口(SSCW),并且冲突更少。进一步提出了一种简单的分析方法来优化共享竞争窗口的大小。通过分析,数值和仿真结果,我们证明,在我们考虑的这些情况下,基于SSCW的802.11 DCF协议要比802.15.4(ZigBee)和基于BEB的802.11 DCF(WiFi)更好。我们还表明,基于SSCW的802.11比TDMA更具容错性和公平性

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