Frequency diverse array(FDA)radar has been studied for more than 15 years and has attracted a lot of attention due to its potential advantages over the well-known phased array radar.The representative feature of FDA i...Frequency diverse array(FDA)radar has been studied for more than 15 years and has attracted a lot of attention due to its potential advantages over the well-known phased array radar.The representative feature of FDA is range-angle-time-dependent transmit beampattern and its underlying properties are continuously revealed in the research.The formulation and exploitation of the transmit diversity with a frequency increment is the fundamental principle,which brings extra degrees-of-freedom(DOFs)in the transmit dimension.As the FDA radar carries additional information in range,it provides more flexibility in signal processing and also brings in new technical issues.This article overviews the state-of-the-art in FDA radar area and its applications,mainly based on the progress in our group.There are two main catalogs in FDA radar area,namely coherent FDA and FDA-MIMO(multiple-input multiple-output)radars.Potential applications including target parameter estimation,ambiguous clutter suppression,and deceptive jammer suppression are discussed.展开更多
针对经典的最小方差无畸变响应波束形成器应用在FDA-BFF(Frequency Diverse Array Based On Fre-quency Filter,FDA-BFF)及FDA-MIMO(Frequency Diverse Array Multiple-Input Multiple-Output,FDA-MIMO)接收机结构时,当阵元数较大或干...针对经典的最小方差无畸变响应波束形成器应用在FDA-BFF(Frequency Diverse Array Based On Fre-quency Filter,FDA-BFF)及FDA-MIMO(Frequency Diverse Array Multiple-Input Multiple-Output,FDA-MIMO)接收机结构时,当阵元数较大或干扰与目标角度维接近时波束主瓣会产生峰值畸变或偏移,波束形成器输出性能下降,无法有效确定目标位置的问题,提出了基于双边小方差无畸变响应的子阵频控阵波束形成算法。该算法将一维均匀线性阵列划分为两个采用不同非线性频偏的中心对称子阵结构,在目标位置形成点状波束,对传统频偏固定的频控阵方向图中的距离-角度实现解耦。之后,通过双边小方差无畸变响应算法中求解克罗内克积的方式降低了算法计算量。仿真验证表明,阵元数较大时该算法在目标位置处形成点状波束的同时,可以有效抑制角度维不可分的干扰。展开更多
基金This work was supported in part by the National Natural Science Foundation of China(NSFC)(Nos.61931016,62071344 and 61911530246)the Key Laboratory Equipment Advanced Research Fund(No.6142206200210).
文摘Frequency diverse array(FDA)radar has been studied for more than 15 years and has attracted a lot of attention due to its potential advantages over the well-known phased array radar.The representative feature of FDA is range-angle-time-dependent transmit beampattern and its underlying properties are continuously revealed in the research.The formulation and exploitation of the transmit diversity with a frequency increment is the fundamental principle,which brings extra degrees-of-freedom(DOFs)in the transmit dimension.As the FDA radar carries additional information in range,it provides more flexibility in signal processing and also brings in new technical issues.This article overviews the state-of-the-art in FDA radar area and its applications,mainly based on the progress in our group.There are two main catalogs in FDA radar area,namely coherent FDA and FDA-MIMO(multiple-input multiple-output)radars.Potential applications including target parameter estimation,ambiguous clutter suppression,and deceptive jammer suppression are discussed.
文摘针对经典的最小方差无畸变响应波束形成器应用在FDA-BFF(Frequency Diverse Array Based On Fre-quency Filter,FDA-BFF)及FDA-MIMO(Frequency Diverse Array Multiple-Input Multiple-Output,FDA-MIMO)接收机结构时,当阵元数较大或干扰与目标角度维接近时波束主瓣会产生峰值畸变或偏移,波束形成器输出性能下降,无法有效确定目标位置的问题,提出了基于双边小方差无畸变响应的子阵频控阵波束形成算法。该算法将一维均匀线性阵列划分为两个采用不同非线性频偏的中心对称子阵结构,在目标位置形成点状波束,对传统频偏固定的频控阵方向图中的距离-角度实现解耦。之后,通过双边小方差无畸变响应算法中求解克罗内克积的方式降低了算法计算量。仿真验证表明,阵元数较大时该算法在目标位置处形成点状波束的同时,可以有效抑制角度维不可分的干扰。