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Interference Mitigation through Adaptive Power Control in Wireless Sensor Networks

机译:无线传感器网络中通过自适应功率控制来缓解干扰

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Adaptive transmission power control schemes have been introduced in wireless sensor networks to adjust energy consumption under different network conditions. This is a crucial goal, given the constraints under which sensor communications operate. Power reduction may however have counter-productive effects to network performance. Yet, indiscriminate power boosting may detrimentally affect interference. We are interested in understanding the conditions under which coordinated power reduction may lead to better spectrum efficiency, interference mitigation and, thus, have beneficial effects on network performance. Through a combination of measurements and simulations, we study the relation between transmission power and communication efficiency with the technique of Adaptive and Robust Topology control (ART), showing how power reduction can benefit energy and spectrum efficiency. We identify critical limitations in ART (in terms of stability and adaptivity), discussing the potential of more cooperative power-control approaches.
机译:在无线传感器网络中引入了自适应传输功率控制方案,以在不同的网络条件下调整能量消耗。考虑到传感器通信运行的约束,这是一个重要目标。然而,功率降低可能对网络性能具有反大效效果。然而,不分青红皂酸的功率提升可能会影响干扰。我们有兴趣了解协调能力降低可能导致更好的频谱效率,干扰缓解以及对网络性能有益的影响。通过测量和仿真的组合,我们研究了自适应和鲁棒拓扑控制技术的传输功率和通信效率之间的关系,显示了功率降低如何效益能量和频谱效率。我们识别领域的关键限制(在稳定性和适应性方面),讨论了更多合作功率控制方法的潜力。

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