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Universal decentralized estimation in a bandwidth constrained sensor network

机译:带宽受限的传感器网络中的通用分散估计

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Consider a situation where a set of distributed sensors and a fusion center wish to cooperate to estimate an unknown parameter over a bounded interval [-U,U]. Each sensor collects one noise-corrupted sample, performs a local estimation, and transmits a message to the fusion center, while the latter combines the received messages to produce a final estimate. This correspondence investigates optimal local estimation and final fusion schemes under the constraint that the communication from each sensor to the fusion center must be a one-bit message. Such a binary message constraint is well motivated by the bandwidth limitation of the communication links, fusion center, and by the limited power budget of local sensors. In the absence of bandwidth constraint and assuming the noises are bounded to the interval [-U,U], additive, independent, but otherwise unknown, the classical estimation theory suggests that a total of O(U/sup 2///spl epsi//sup 2/) sensors are necessary and sufficient in order for the sensors and the fusion center to jointly estimate the unknown parameter within /spl epsi/ root mean squared error (MSE). It is shown in this correspondence that the same remains true even with the binary message constraint. Furthermore, the optimal decentralized estimation scheme suggests allocating 1/2 of the sensors to estimate the first bit of the unknown parameter, 1/4 of the sensors to estimate the second bit, and so on.
机译:考虑以下情况:一组分布式传感器和一个融合中心希望合作以估计有界间隔[-U,U]上的未知参数。每个传感器收集一个受噪声破坏的样本,执行局部估计,然后将消息发送到融合中心,而后者则将接收到的消息进行组合以产生最终估计值。该对应关系在从每个传感器到融合中心的通信必须为一位消息的约束下研究了最佳局部估计和最终融合方案。这样的二进制消息约束是由通信链路的带宽限制,融合中心以及本地传感器的有限功率预算引起的。在没有带宽约束的情况下,并且假设噪声被限制在区间[-U,U]上,该区间是累加的,独立的,但在其他情况下未知,经典估计理论表明,总数为O(U / sup 2 //// spl epsi为了使传感器和融合中心共同估计/ spl epsi /均方根误差(MSE)内的未知参数,必须有足够的传感器。在该对应关系中示出,即使在二进制消息约束的情况下,情况仍然如此。此外,最佳分散估计方案建议分配1/2个传感器以估计未知参数的第一位,分配1/4个传感器以估计第二位,依此类推。

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