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Synthesis of Sparse Arrays With Frequency-Invariant-Focused Beam Patterns Under Accurate Sidelobe Control by Iterative Second-Order Cone Programming

机译:精确的旁瓣控制下具有频率不变焦点波束方向图的稀疏阵列的合成通过迭代二阶锥规划

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摘要

It is shown in this communication that the problem of synthesizing a frequency-invariant (FI) beam pattern with as few elements as possible can be transformed into a sequence of weighted optimizations under multiple convex constraints. The objective of the weighted optimization is to minimize the number of radiating elements. For the filter-and-sum beamforming structure, this is equivalent to minimizing the number of filters, each with a set of optimized coefficients. The multiple constraints are adopted to individually control the mainlobe and sidelobe pattern characteristics, so as to preserve the FI property in the mainlobe region while satisfying a given upper bound in the sidelobe region. The WNG constraint can also be incorporated into the proposed method to enhance the synthesis robustness. This method can be easily implemented by iterative second-order cone programming (SOCP), and only few iterations are required to reach the convergence. A set of examples for the synthesis of FI patterns with uniform sidelobe level (SLL) or multiple nulls, scannable FI patterns, and the synthesis of FI pattern for an arc array with directive elements, is presented to validate the effectiveness and advantages of the proposed method. The element saving is about 23.3%–50% for the test cases.
机译:在该通信中表明,在多个凸约束下,将具有尽可能少的元素的频率不变(FI)波束方向图合成问题可以转换为一系列加权优化。加权优化的目的是最小化辐射元件的数量。对于滤波器和求和波束形成结构,这等效于最小化滤波器的数量,每个滤波器都有一组优化系数。采用多个约束条件来分别控制主瓣和旁瓣的图案特征,从而在满足旁瓣区域的给定上限的同时保留主瓣区域的FI特性。 WNG约束也可以并入所提出的方法中,以增强合成鲁棒性。此方法可以通过迭代二阶锥规划(SOCP)轻松实现,并且只需很少的迭代即可达到收敛。提出了一组用于合成具有均匀旁瓣电平(SLL)或多个无效值的FI模式,可扫描FI模式以及具有指令元素的弧形阵列FI模式合成的示例,以验证所提出方案的有效性和优势。方法。在测试案例中,元素节省约为23.3%–50%。

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