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Transmission scheduling in ad hoc networks with directional antennas

机译:具有定向天线的ad hoc网络中的传输调度

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Directional antennas can adaptively select radio signals of interest in specific directions, while filtering out unwanted interference from other directions. Although a couple of medium access protocols based on random access schemes have been proposed for networks with directional antennas, they suffer from high probability of collisions because of their dependence on omnidirectional mode for the transmission or reception of control packets in order to establish directional links. We propose a distributed receiver-oriented multiple access (ROMA) channel access scheduling protocol for ad hoc networks with directional antennas, each of which can form multiple beams and commence several simultaneous communication sessions. Unlike random access schemes that use on-demand handshakes or signal scanning to resolve communication targets, ROMA determines a number of links for activation in every time slot using only two-hop topology information. It is shown that significant improvements on network throughput and delay can be achieved by exploiting the multi-beam forming capability of directional antennas in both transmission and reception. The performance of ROMA is studied by simulations, and compared with a well-know static scheduling scheme that is based on global topology information.
机译:定向天线可以在特定方向上自适应地选择感兴趣的无线电信号,同时滤除其他方向上的有害干扰。尽管已经针对具有定向天线的网络提出了几种基于随机接入方案的媒体接入协议,但是由于它们依赖于全向模式来传输或接收控制分组以建立定向链路,因此它们遭受冲突的可能性很高。我们为具有定向天线的ad hoc网络提出了一种面向接收方的分布式多址访问(ROMA)信道访问调度协议,每个定向天线都可以形成多束波束并开始多个同时的通信会话。与使用按需握手或信号扫描来解决通信目标的随机访问方案不同,ROMA仅使用两跳拓扑信息来确定每个时隙中用于激活的链路数量。结果表明,通过在发送和接收中利用定向天线的多波束形成能力,可以实现网络吞吐量和延迟的显着改善。通过仿真研究了ROMA的性能,并与基于全局拓扑信息的众所周知的静态调度方案进行了比较。

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