项目名称: 基于多精度复合阵列天线的数字波束雷达关键技术研究
项目编号: No.61501172
项目类型: 青年科学基金项目
立项/批准年度: 2016
项目学科: 无线电电子学、电信技术
项目作者: 唐玥
作者单位: 河海大学
项目金额: 21万元
中文摘要: 为提高公共场所突发事件的快速处理能力,我国急需一种具有全天候多目标精确定位能力的低成本新装备。多精度复合阵列天线(MRCA)是一种能用少量天线单元形成低副瓣、窄波束的稀布阵列天线新技术,然而MRCA在数字波束雷达应用中的宽角度多目标互扰问题严重制约了该技术的实际应用与推广。本课题拟解决MRCA在宽扫描角数字波束雷达应用中的多目标互扰问题和实现在安保雷达应用背景下的优化设计。首先,研究适用于MRCA数字波束雷达的自适应目标分辨技术,解决MRCA固有的宽角度扫描时多目标互扰问题;其次,结合粒子群进化算法(PSO)优化算法,研究基于MRCA的数字波束雷达架构下的自适应多目标快速分辨方法;最后,针对公共场所安保应用背景,研究基于PSO算法的MRCA优化设计方法,使实际使用的阵元最少。本课题的研究能完善基于MRCA的稀布阵列天线雷达理论,更好的发挥数字波束雷达技术在我国公共安全领域的作用。
中文关键词: 多精度复合阵列天线(MRCA);稀布阵列雷达;数字波束雷达;自适应信号处理
英文摘要: In order to improve the ability of emergency fast handling in public area, our country needs a low cost new radar system with all-weather multi-target detection ability. The Multi-Resolution Composite Array (MRCA) which is proposed by applicant is a new sparse array technology which could achieve narrow beam and low sidelobe with a few antenna elements. However, multi-target interference happens when apply MRCA in Digital beamforming (DBF) radar for detecting multi-target in wide angle. It severely affects the spread and application of MRCA technology. This project will focus on the problem of applying MRCA in DBF radar, try to offset the effect of multi-target interference when applying MRCA in wide angle detection DBF radar and realize the optimum design of MRCA in the application background of security radar. Firstly, research the adaptive target identification technology for MRCA DBF radar to solve the multi-target interference which happens while wide scanning angle with MRCA. Secondly, based on Particle Swarm Optimizer (PSO) algorithm, research the fast adaptive target identification technology for the MRCA DBF radar. Lastly, based on PSO algorithm, research the optimize design method for MRCA to reduce the array element as more as possible. The research of this project could improve the theory of sparse array radar based on MRCA and help to popularize DBF radar technology in China's public security area.
英文关键词: Multi-Resolution Composite Array (MRCA);Sparse array radar;Digital beamforming radar;Adaptive signal processing