针对多输入多输出(multiple-input multiple-output,MIMO)雷达通信一体化(dual-function radarcommunication,DFRC)系统性能对信道状态信息(channel state information,CSI)精度敏感的问题,构建了非完美CSI条件下的模数混合波束形成设...针对多输入多输出(multiple-input multiple-output,MIMO)雷达通信一体化(dual-function radarcommunication,DFRC)系统性能对信道状态信息(channel state information,CSI)精度敏感的问题,构建了非完美CSI条件下的模数混合波束形成设计模型,提出了一种鲁棒的混合波束形成器优化方法。利用CSI误差的先验统计信息,在满足通信中断概率约束的同时最小化雷达方向图加权均方误差,以得到期望的发射数字和模拟波束形成矩阵。所提出的非凸优化问题首先利用坎泰利(Cantelli)不等式进行近似处理,再利用交替方向乘子法(alternating direction method of multipliers,ADMM)求解。仿真实验对比了多种算法之间的性能差异,验证了所提出的MIMO-DFRC混合波束形成设计方法具有高效性和鲁棒性。展开更多
In this paper,we investigate a distributed multi-input multi-output and orthogonal frequency division multiplexing(MIMO-OFDM) dual-functional radar-communication(DFRC) system,which enables simultaneous communication a...In this paper,we investigate a distributed multi-input multi-output and orthogonal frequency division multiplexing(MIMO-OFDM) dual-functional radar-communication(DFRC) system,which enables simultaneous communication and sensing in different subcarrier sets.To obtain the best tradeoff between communication and sensing performance,we first derive Cramer-Rao Bound(CRB) of targets in detection area,and then maximize the transmission rate by jointly optimizing the power/subcarriers allocation and the selection of radar receivers under the constraints of detection performance and total transmit power.To tackle the non-convex mixed integer programming problem,we decompose the original problem into a semidefinite programming(SDP) problem and a convex quadratic integer problem and solve them iteratively.The numerical results demonstrate the effectiveness of our proposed algorithm,as well as the performance improvement brought by optimizing radar receivers selection.展开更多
文摘针对多输入多输出(multiple-input multiple-output,MIMO)雷达通信一体化(dual-function radarcommunication,DFRC)系统性能对信道状态信息(channel state information,CSI)精度敏感的问题,构建了非完美CSI条件下的模数混合波束形成设计模型,提出了一种鲁棒的混合波束形成器优化方法。利用CSI误差的先验统计信息,在满足通信中断概率约束的同时最小化雷达方向图加权均方误差,以得到期望的发射数字和模拟波束形成矩阵。所提出的非凸优化问题首先利用坎泰利(Cantelli)不等式进行近似处理,再利用交替方向乘子法(alternating direction method of multipliers,ADMM)求解。仿真实验对比了多种算法之间的性能差异,验证了所提出的MIMO-DFRC混合波束形成设计方法具有高效性和鲁棒性。
基金supported by the National Key R&D Program of China (2023YFB2905605)the National Natural Science Foundation of China (62072229)。
文摘In this paper,we investigate a distributed multi-input multi-output and orthogonal frequency division multiplexing(MIMO-OFDM) dual-functional radar-communication(DFRC) system,which enables simultaneous communication and sensing in different subcarrier sets.To obtain the best tradeoff between communication and sensing performance,we first derive Cramer-Rao Bound(CRB) of targets in detection area,and then maximize the transmission rate by jointly optimizing the power/subcarriers allocation and the selection of radar receivers under the constraints of detection performance and total transmit power.To tackle the non-convex mixed integer programming problem,we decompose the original problem into a semidefinite programming(SDP) problem and a convex quadratic integer problem and solve them iteratively.The numerical results demonstrate the effectiveness of our proposed algorithm,as well as the performance improvement brought by optimizing radar receivers selection.