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Interference-aware Energy-efficient MAC Protocols for Sensor and Wireless Pervasive Networks

机译:用于传感器和无线普遍网络的干扰感知的节能MAC协议

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In wireless sensor and pervasive networks, multihop networking is expected to be the norm, rather than exception. However, the current paradigm for medium access control (MAC) in wireless LANs/PANs cannot handle the interference issue well and lead to high collision rates in multihop networks, resulting in considerable waste of energy. Also, it is particularly beneficial to employ directional antennas in sensor networks due to its static topology and requirement for energy efficiency and security. In this paper, we propose to use in sensor and pervasive networks the receiver-centric interference management (RIM) method that supports directional antennas and spread scheduling. RIM for sensor networks employs directional busytone and/or directional receiver prohibition to coordinate RIM-aware devices and to protect them from legacy WiFi/CSMA devices. Advantages of RIM-based protocols include collision freedom/controllability, better interference robustness, higher energy efficiency, higher throughput, better security, as well as being not vulnerable to collisions of RTS/CTS messages.
机译:在无线传感器和普遍的网络中,多跳网预计是常态,而不是例外。但是,无线LAN / PAN中的中途访问控制(MAC)的当前范式无法处理干扰问题,导致多跳网络中的高碰撞速率,导致能量相当浪费。此外,由于其静态拓扑和能源效率和安全要求,因此特别有利于使用传感器网络中的定向天线。在本文中,我们建议在传感器和普遍的网络中使用,接收器为中心的干扰管理(RIM)方法,支持定向天线并传播调度。传感器网络的RIM采用定向忙和/或定向接收器禁止坐标,以协调RIM感知设备,并保护它们免受传统WiFi / CSMA设备。基于RIM的协议的优点包括碰撞自由/可控性,更好的干扰稳健性,更高的能量效率,更高的吞吐量,更好的安全性,以及不容易受到RTS / CTS消息的冲突。

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