基于可预测信道跳频的wban干扰抑制分布式方案

M. Ali, Hassine Moungla, M. Younis, A. Mehaoua
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引用次数: 20

摘要

当不同无线体域网络的传感器在同一信道上同时传输时,会产生同信道干扰,从而降低无线体域网络的性能。本文利用ZIGBEE 2.4 GHz国际频带的16个可用信道,提出了一种基于拉丁矩形的可预测信道跳变避免干扰的分布式方案,即CHIM。在提出的CHIM方案中,每个WBAN的协调器选择一个拉丁矩形,其行为ZIGBEE信道,列为传感器id。基于单个WBAN的拉丁矩形,每个传感器分配一个备用时隙和一个信道,以便在遇到干扰时使用,从而最大限度地减少共存WBAN的不同传输之间的碰撞。我们进一步提出了一个数学分析,推导出网络中每个传感器传输的碰撞概率。此外,通过仿真验证了CHIM在传输延迟和能耗最小化方面的有效性。
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Distributed scheme for interference mitigation of WBANs using predictable channel hopping
When sensors of different coexisting wireless body area networks (WBANs) transmit at the same time using the same channel, a co-channel interference is experienced and hence the performance of the involved WBANs may be degraded. In this paper, we exploit the 16 channels available in the 2.4 GHz international band of ZIGBEE, and propose a distributed scheme that avoids interference through predictable channel hopping based on Latin rectangles, namely, CHIM. In the proposed CHIM scheme, each WBAN's coordinator picks a Latin rectangle whose rows are ZIGBEE channels and columns are sensor IDs. Based on the Latin rectangle of the individual WBAN, each sensor is allocated a backup time-slot and a channel to use if it experiences interference such that collisions among different transmissions of coexisting WBANs are minimized. We further present a mathematical analysis that derives the collision probability of each sensor's transmission in the network. In addition, the efficiency of CHIM in terms of transmission delay and energy consumption minimization are validated by simulations.
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