Design of Single Unimodular Waveform With Good Correlation Level Via Phase Optimizations

Xiaohan Zhao, Yongzhe Li, R. Tao
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Abstract

In this paper, we focus on the unimodular waveform design with good correlation property, i.e., with low integrated sidelobe level (ISL). In contrast to existing approaches that commonly involve constraints on the moduli of waveform elements, we come up with the idea of designing the waveform via directly optimizing its phase values. Using this idea, the standard ISL-minimization based waveform design is converted as an unconstrained optimization problem with respect to the phase values of waveform elements, which avoids the repetitive procedure of projecting non-unimodular complex values into the best approximations of constant magnitudes. To this end, we first reformulate the ISL metric into a function of the phase values to be obtained for the waveform, and then solve the new unconstrained ISL-minimization-based waveform design using majorization-minimization techniques. The first-order gradient of the reformulated objective function is derived, by which the majorant of the objective is elaborated. Based on this, we finally tackle the design via iterations, at each of which we obtain a closed-form solution with fast implementations. An algorithm is proposed, with whose simpleness and effectiveness are verified by simulations.
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通过相位优化设计具有良好相关电平的单模波形
本文主要研究具有良好相关特性的单模波形设计,即具有较低的综合旁瓣电平(ISL)。与现有的通常涉及对波形单元模量的约束的方法相反,我们提出了通过直接优化其相位值来设计波形的想法。利用这一思想,将基于is最小化的标准波形设计转换为波形单元相位值的无约束优化问题,从而避免了将非单模复数值投影到恒幅值的最佳近似值的重复过程。为此,我们首先将ISL度量重新表述为波形相位值的函数,然后使用最大化-最小化技术求解新的基于无约束ISL最小化的波形设计。导出了重新表述后的目标函数的一阶梯度,并以此阐述了目标函数的主体。在此基础上,我们最终通过迭代处理设计,在每次迭代中我们都获得了具有快速实现的封闭形式的解决方案。提出了一种算法,通过仿真验证了算法的简单性和有效性。
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