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Distributed scheme for interference mitigation of coexisting WBANs using Latin rectangles

机译:使用拉丁矩形减轻共存WBAN干扰的分布式方案

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The performance of wireless body area networks (WBANs) may be degraded due to co-channel interference, i.e., when sensors of different coexisting WBANs transmit at the same time-slots using the same channel. In this paper, we exploit the 16 channels available in the 2.4 GHz unlicensed international band of ZIGBEE, and propose a distributed scheme that opts to avoid interference through channel to time-slot hopping based on Latin rectangles, DAIL. In DAIL, each WBAN's coordinator picks a Latin rectangle whose rows are ZIGBEE channels and colunms are time-slots of its superframe. Subsequently, it assigns a unique symbol to each sensor; this latter forms a transmission pattern according to distinct positions of its symbol in the rectangle, such that collisions among different transnnssions of coexisting WBANs are minimized. We further present an analytical model that derives bounds on the collision probability of each sensor's transmission in the network. In addition, the efficiency of DAIL in interference mitigation has been validated by simulations.
机译:无线人体局域网(WBAN)的性能可能会由于共信道干扰而降低,即,当不同共存WBAN的传感器使用同一信道在相同时隙进行传输时。在本文中,我们利用ZIGBEE的2.4 GHz国际免许可频段中的16个信道,并提出了一种分布式方案,该方案选择避免基于拉丁矩形DAIL的信道到时隙跳变的干扰。在DAIL中,每个WBAN的协调器都会选择一个拉丁矩形,其行是ZIGBEE通道,而colunms是其超帧的时隙。随后,它为每个传感器分配一个唯一的符号。后者根据其符号在矩形中的不同位置形成传输模式,从而使共存WBAN的不同传输之间的冲突最小化。我们进一步提出了一个解析模型,该模型导出了网络中每个传感器传输的碰撞概率的界限。此外,通过仿真验证了DAIL在缓解干扰方面的效率。

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