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Directional Medium Access Control (MAC) Protocols in Wireless Ad Hoc and Sensor Networks: A Survey

机译:无线Ad Hoc和传感器网络中的定向媒体访问控制(MAC)协议:一项调查

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This survey paper presents the state-of-the-art directional medium access control (MAC) protocols in wireless ad hoc and sensor networks (WAHSNs). The key benefits of directional antennas over omni-directional antennas are longer communication range, less multipath interference, more spatial reuse, more secure communications, higher throughput and reduced latency. However, directional antennas lead to single-/multi-channel directional hidden/exposed terminals, deafness and neighborhood, head-of-line blocking, and MAC-layer capture which need to be overcome. Addressing these problems and benefits for directional antennas to MAC protocols leads to many classes of directional MAC protocols in WAHSNs. These classes of directional MAC protocols presented in this survey paper include single-channel, multi-channel, cooperative and cognitive directional MACs. Single-channel directional MAC protocols can be classified as contention-based or non-contention-based or hybrid-based, while multi-channel directional MAC protocols commonly use a common control channel for control packets/tones and one or more data channels for directional data transmissions. Cooperative directional MAC protocols improve throughput in WAHSNs via directional multi-rate/single-relay/multiple-relay/two frequency channels/polarization, while cognitive directional MAC protocols leverage on conventional directional MAC protocols with new twists to address dynamic spectrum access. All of these directional MAC protocols are the pillars for the design of future directional MAC protocols in WAHSNs.
机译:这份调查报告提出了无线自组织和传感器网络(WAHSN)中最新的定向媒体访问控制(MAC)协议。与全向天线相比,定向天线的主要优势是通信距离更长,多径干扰更少,空间复用性更高,通信更安全,吞吐量更高,等待时间更短。但是,定向天线会导致单/多通道定向隐藏/暴露终端,耳聋和邻域,线头阻塞和MAC层捕获,这是需要克服的。解决这些问题和定向天线对MAC协议的好处会导致WAHSN中的许多类定向MAC协议。本调查报告中介绍的这些类型的定向MAC协议包括单通道,多通道,协作和认知定向MAC。单通道定向MAC协议可分为基于竞争的或基于非竞争的或基于混合的,而多通道定向MAC协议通常将公共控制信道用于控制数据包/单音,将一个或多个数据信道用于定向数据传输。协作型定向MAC协议通过定向多速率/单中继/多中继/两个频率信道/极化来提高WAHSN的吞吐量,而认知定向MAC协议则以传统的定向MAC协议为基础,以新的方式来解决动态频谱访问问题。所有这些定向MAC协议都是WAHSN中未来定向MAC协议设计的基础。

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