Nonlinear Frequency Offset Optimization Strategy for Solving Secondary Range Ambiguity in Planar FDA-STAP Radar

IF 5.7 2区 计算机科学 Q1 ENGINEERING, AEROSPACE IEEE Transactions on Aerospace and Electronic Systems Pub Date : 2025-02-13 DOI:10.1109/TAES.2025.3539648
Yan Sun;Shuai Shao;Wen-Qin Wang;Maria Sabrina Greco;Fulvio Gini;Shunsheng Zhang
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Abstract

Frequency diverse array (FDA) radar enjoys a remarkable benefit in range ambiguous clutter suppression thanks to its range dependency of transmitting beam pattern. However, a linear frequency offset can cause secondary range ambiguity problems that deteriorate the clutter suppression performance. To address this problem, we propose here a nonlinear frequency offset optimization strategy for planar FDA-space time adaptive processing radar. In this article, our study first formulates a space-time-range signal model of a planar FDA radar. Based on the analysis of the secondary range ambiguity, we address the nonlinear frequency offset optimization problem and propose an improved search algorithm with fast convergence to solve it. Numerical analysis is carried out to verify the validity of the proposed nonlinear strategy to remove the secondary range ambiguity problem and maintain a high range-dimensional beam resolution.
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平面FDA-STAP雷达二次距离模糊非线性频偏优化策略
分频阵列雷达由于具有发射波束方向图的距离依赖性,在抑制距离模糊杂波方面具有显著的优势。然而,线性频率偏移会导致二次距离模糊问题,从而降低杂波抑制性能。为了解决这一问题,本文提出了一种平面fda -时空自适应处理雷达的非线性频偏优化策略。本文首先建立了平面FDA雷达的空时信号模型。在分析二次距离模糊的基础上,针对非线性频偏优化问题,提出了一种改进的快速收敛搜索算法。数值分析验证了所提出的非线性策略在消除二次距离模糊问题和保持高距离维波束分辨率方面的有效性。
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来源期刊
CiteScore
7.80
自引率
13.60%
发文量
433
审稿时长
8.7 months
期刊介绍: IEEE Transactions on Aerospace and Electronic Systems focuses on the organization, design, development, integration, and operation of complex systems for space, air, ocean, or ground environment. These systems include, but are not limited to, navigation, avionics, spacecraft, aerospace power, radar, sonar, telemetry, defense, transportation, automated testing, and command and control.
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