A Novel Weighted Cooperative Routing Algorithm Based on Distributed Relay Selection

Chao Chen, B. Zheng, Xianjing Zhao, Zhen-ya Yan
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引用次数: 14

Abstract

Typically wireless multi-hop ad hoc and sensor networks utilize protocols that relay packets hop-by-hop along a path connecting source node to sink node. The emerging cooperative routing (CR) methodology, however, can obtain distinct performance gain by selecting extra relay to forward data. This study presents a novel distributed weighted cooperative routing algorithm (DWCRA) which selects the "best" relay with the optimal weighted metric for cooperative transmission in a distributed manner. The weighted metric of relay selection strategy comprises of remaining energy of relays and channel state information (CSI) of each source-relay-sink pair. The simulation is implemented on NS-2 platform and results show that, compared to non-cooperative DSDV routing protocol, DWRCA achieves a delivery-lifetime tradeoff between maximal remaining energy algorithm (MREA) and optimal channel state algorithm (OCSA). In addition, different performance demand can be met by dynamic coordination of the weighted factors
一种基于分布式中继选择的加权协同路由算法
典型的无线多跳自组织网络和传感器网络利用协议,沿着连接源节点到汇聚节点的路径逐跳中继数据包。然而,新兴的协同路由(CR)方法通过选择额外的中继来转发数据,可以获得明显的性能增益。提出了一种新的分布式加权协同路由算法(DWCRA),该算法以分布式方式选择具有最优加权度量的“最佳”中继进行协同传输。中继选择策略的加权度量包括中继的剩余能量和每个源-中继-接收器对的信道状态信息(CSI)。仿真结果表明,与非合作DSDV路由协议相比,DWRCA在最大剩余能量算法(MREA)和最优信道状态算法(OCSA)之间实现了交付寿命的权衡。此外,通过加权因子的动态协调,可以满足不同的性能需求
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