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Theory and Design of Multirate Sensor Arrays

机译:多速率传感器阵列的理论与设计

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This paper studies the basic design challenges associated with multirate sensor arrays. A multirate sensor array is a sensor array in which each sensor node communicates a low-resolution measurement to a central processing unit. The objective is to design the individual sensor nodes and the central processing unit such that, at the end, a unified high-resolution measurement is reconstructed. A multirate sensor array can be modeled as an analysis filterbank in discrete-time. Using this model, the design problem is reduced to solving the following two problems: a) how to design the sensor nodes such that the time-delay of arrival (TDOA) between the sensors can be estimated and b) how to design a synthesis filterbank to fuse the low-rate data sent by the sensor nodes given the TDOA? In this paper, we consider a basic two-channel sensor array. We show that it is possible to estimate the TDOA between the sensors if the analysis filters incorporated in the array satisfy specific phase-response requirements. We then provide practical sample designs that satisfy these requirements. We prove, however, that a fixed synthesis filterbank cannot reconstruct the desired high-resolution measurement for all TDOA values. As a result, we suggest a fusion system that uses different sets of synthesis filters for even and odd TDOAs. Finally, we use the H_(infinity) optimality theory to design optimal synthesis filters.
机译:本文研究了与多速率传感器阵列相关的基本设计挑战。多速率传感器阵列是一种传感器阵列,其中每个传感器节点将低分辨率的测量结果传达给中央处理单元。目的是设计各个传感器节点和中央处理单元,以便最后重建统一的高分辨率测量。可以将多速率传感器阵列建模为离散时间的分析滤波器组。使用该模型,设计问题被简化为解决以下两个问题:a)如何设计传感器节点,以便可以估计传感器之间的到达时间(TDOA),以及b)如何设计综合滤波器组在给定TDOA的情况下融合传感器节点发送的低速率数据?在本文中,我们考虑了一个基本的两通道传感器阵列。我们表明,如果阵列中包含的分析滤波器满足特定的相位响应要求,则可以估计传感器之间的TDOA。然后,我们提供满足这些要求的实用样品设计。但是,我们证明,固定的合成滤波器组无法为所有TDOA值重构所需的高分辨率测量。结果,我们建议一种融合系统,该系统对偶数和奇数TDOA使用不同的合成滤波器集。最后,我们使用H_(无限)最优性理论来设计最优综合滤波器。

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