Wang Haochen, Yu Zhiyu, Wen Fangqing
Department of Communication Technologies and System Design, Technical University of Denmark (DTU), 2800 Lyngby, Denmark.
School of Microelectronics and Communication Engineering, Chongqing University, Chongqing 401331, China.
Sensors (Basel). 2024 Sep 19;24(18):6065. doi: 10.3390/s24186065.
The use of conformal arrays offers a significant advancement in Multiple-Input-Multiple-Output (MIMO) radar, enabling the placement of antennas on irregular surfaces. For joint Direction-of-Departure (DOD) and Direction-of-Arrival (DOA) estimation in conformal-array MIMO radar, the current spectrum-searching methods are computationally too expensive, while the existing rotation-invariant method may suffer from phase ambiguity caused by the non-Nyquist spacing of the sensors. In this paper, an improved rotationally invariant technique is proposed. The core function of the proposed algorithm is to estimate the phase differences between the adjacent sensors; then, it eliminates phase ambiguity via the previous estimated standard phase difference. Thereafter, DODs and DOAs are obtained via Least Squares (LS) fitting. The proposed method provides closed-form estimates for joint DOD and DOA estimation, which is much more efficient than the existing spectrum-searching techniques. Numerical simulations show that the proposed algorithm can accurately determine 2D DODs and DOAs of targets, only requiring approximately 1% of the running time required by existing spectrum-searching approaches.
共形阵列的使用在多输入多输出(MIMO)雷达方面带来了重大进展,使得天线能够放置在不规则表面上。对于共形阵列MIMO雷达中的联合出发方向(DOD)和到达方向(DOA)估计,当前的频谱搜索方法计算成本过高,而现有的旋转不变方法可能会因传感器的非奈奎斯特间距而遭受相位模糊问题。本文提出了一种改进的旋转不变技术。该算法的核心功能是估计相邻传感器之间的相位差;然后,通过先前估计的标准相位差消除相位模糊。此后,通过最小二乘法(LS)拟合获得DOD和DOA。所提出的方法为联合DOD和DOA估计提供了闭式估计,比现有的频谱搜索技术效率高得多。数值模拟表明,所提出的算法能够准确确定目标的二维DOD和DOA,所需运行时间仅约为现有频谱搜索方法的1%。