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Power Allocation for Distributed Detection Systems in Wireless Sensor Networks With Limited Fusion Center Feedback

机译:具有有限融合中心反馈的无线传感器网络中分布式检测系统的电源分配

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We consider a distributed detection system for a wireless sensor network over slow-fading channels. Each sensor only has knowledge of quantized channel state information (CSI) which is received from the fusion center via a limited feedback channel. We then consider transmit power allocation at each sensor in order to maximize a J-divergence based detection metric subject to a total and individual transmit power constraints. Our aim is to jointly design the quantization regions of all sensors CSI and the corresponding power allocations. A locally optimum solution is obtained by applying the generalized Lloyd algorithm (GLA). To overcome the high computational complexity of the GLA, we then propose a low-complexity near-optimal scheme which performs very close to its GLA based counterpart. This enables us to explicitly formulate the problem and to find the unique solution despite the non-convexity of the optimization problem. An asymptotic analysis is also provided when the number of feedback bits becomes large. Numerical results illustrate that only a small amount of feedback is needed to achieve a detection performance close to the full CSI case.
机译:我们考虑在慢衰落的信道上为无线传感器网络提供分布式检测系统。每个传感器仅具有通过有限反馈信道从融合中心接收到的量化信道状态信息(CSI)的知识。然后,我们考虑在每个传感器处分配发射功率,以便在受到总发射功率约束和单个发射功率约束的情况下,最大化基于J散度的检测指标。我们的目标是共同设计所有传感器CSI的量化区域和相应的功率分配。通过应用广义Lloyd算法(GLA)获得局部最优解。为了克服GLA的高计算复杂性,我们然后提出了一种低复杂度的接近最佳方案,该方案的性能非常接近其基于GLA的同类方案。尽管优化问题不具有凸性,这使我们能够明确地提出问题并找到唯一的解决方案。当反馈位数变大时,也会提供渐近分析。数值结果表明,仅需要少量反馈就可以实现接近整个CSI情况的检测性能。

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