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Coprime Sensing via Chinese Remaindering Over Quadratic Fields—Part II: Generalizations and Applications

机译:通过二次域中的余数进行汉语互质感知—第二部分:归纳与应用

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摘要

The practical application of a new class of coprime arrays based on the Chinese remainder theorem (CRT) over quadratic fields is presented in this paper. The proposed CRT arrays are constructed by ideal lattices embedded from coprime quadratic integers with B-1 and B-2 being their matrix representations, respectively, whereby the degrees of freedom (DOF) surges to O(vertical bar det (B1B2)vertical bar) with vertical bar det(B-1)vertical bar + vertical bar det(B-2)vertical bar sensors. The geometrical constructions and theoretical foundations were discussed in the accompanying paper in great detail, while this paper focuses on aspects of the application of the proposed arrays in two-dimensional (2-D) remote sensing. A generalization of CRT arrays based on two or more pairwise coprime ideal lattices is proposed with closed-form expressions on sensor locations, the total number of sensors, and the achievable DOF. The issues pertaining to the coprimality of any two quadratic integers are also addressed to explore all possible ideal lattices. Exploiting the symmetry of lattices, sensor reduction methods are discussed with the coarray remaining intact for economic maximization. In order to extend conventional angle estimation techniques based on uniformly distributed arrays to the method that can exploit any coarray configurations based on lattices, this paper introduces a hexagon-to-rectangular transformation to 2-D spatial smoothing, providing the possibility of finding more compact sensor arrays. Examples are provided to verify the feasibility of the proposed methods.
机译:提出了基于余数定理(CRT)的二次余数数组在二次域上的实际应用。所提出的CRT阵列由嵌入互素二次整数的理想晶格构成,其中B-1和B-2分别是其矩阵表示,由此自由度(DOF)激增至O(垂直条形(B1B2)垂直条形)带有垂直条检测器(B-1)垂直条+垂直条检测器(B-2)垂直条传感器。随附的论文中详细讨论了其几何构造和理论基础,同时本文重点研究了所提出的阵列在二维(2-D)遥感中的应用方面。提出了基于两个或多个成对的互质理想晶格的CRT阵列的一般化方法,并在传感器位置,传感器总数和可达到的自由度上采用了封闭形式。还讨论了与任何两个二次整数的共素性有关的问题,以探索所有可能的理想晶格。利用晶格的对称性,讨论了减少传感器的方法,同时为了经济上的最大化而保持原样。为了将基于均匀分布阵列的常规角度估计技术扩展到可以利用基于网格的任何协同阵列配置的方法,本文将六角形到矩形变换引入到二维空间平滑中,从而提供了寻找更紧凑的可能性传感器阵列。提供了示例以验证所提出方法的可行性。

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