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A Low Duty Cycle MAC Protocol for Directional Wireless Sensor Networks

机译:用于定向无线传感器网络的低占空比MAC协议

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摘要

Directional communication in wireless sensor networks minimizes interference and thereby increases reliability and throughput of the network. Hence, directional wireless sensor networks (DWSNs) are fastly attracting the interests of researchers and industry experts around the globe. However, in DWSNs the conventional medium access control protocols face some new challenges including the synchronization among the nodes, directional hidden terminal and deafness problems, etc. For taking the advantages of spatial reusability and increased coverage from directional communications, a low duty cycle directional Medium Access control protocol for mobility based DWSNs, termed as DCD-MAC, is developed in this paper. To reduce energy consumption due to idle listening, duty cycling is extensively used in WSNs. In DCD-MAC, each pair of parent and child sensor nodes performs synchronization with each other before data communication. The nodes in the network schedule their time of data transmissions in such a way that the number of collisions occurred during transmissions from multiple nodes is minimized. The sensor nodes are kept active only when the nodes need to communicate with each other. The DCD-MAC exploits localized information of mobile nodes in a distributed manner and thus it gives weighted fair access of transmission slots to the nodes. As a final point, we have studied the performance of our proposed protocol through extensive simulations in NS-3 and the results show that the DCD-MAC gives better reliability, throughput, end-to-end delay, network lifetime and overhead comparing to the related directional MAC protocols.
机译:无线传感器网络中的方向通信最小化干扰,从而提高了网络的可靠性和吞吐量。因此,定向无线传感器网络(DWSNS)迅速吸引全球研究人员和行业专家的兴趣。然而,在DWSNS中,传统的媒体访问控制协议面临一些新的挑战,包括节点,定向隐藏终端和耳聋问题等的同步,用于采用空间可重用性和从方向通信的覆盖率增加,低占空比定向介质本文开发了基于移动基于移动的DWD-Mac的DWSN的控制协议。为了降低由于空闲收听导致的能耗,在WSN中广泛使用占空比。在DCD-MAC中,每对父和子传感器节点在数据通信之前彼此执行同步。网络中的节点以比较最小化在来自多个节点的传输期间发生的冲突的数量的方式调度其数据传输的时间。当节点需要彼此通信时,传感器节点仅保持有效。 DCD-MAC以分布式方式利用移动节点的本地化信息,因此它使传输槽的加权公平访问到节点。作为最后一点,我们通过NS-3的广泛模拟研究了我们提出的协议的表现,结果表明,DCD-MAC提供了更好的可靠性,吞吐量,端到端延迟,网络生命周期和开销比较相关定向MAC协议。

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