Su Xiaolong, Liu Zhen, Chen Xin, Wei Xizhang
College of Electronic Science, National University of Defense Technology, Changsha 410073, China.
Sensors (Basel). 2018 Jan 14;18(1):226. doi: 10.3390/s18010226.
Due to its widespread application in communications, radar, etc., the orthogonal frequency division multiplexing (OFDM) signal has become increasingly urgent in the field of localization. Under uniform circular array (UCA) and near-field conditions, this paper presents a closed-form algorithm based on phase difference for estimating the three-dimensional (3-D) location (azimuth angle, elevation angle, and range) of the OFDM signal. In the algorithm, considering that it is difficult to distinguish the frequency of the OFDM signal's subcarriers and the phase-based method is always affected by errors of the frequency estimation, this paper employs sparse representation (SR) to obtain the super-resolution frequencies and the corresponding phases of subcarriers. Further, as the phase differences of the adjacent sensors including azimuth angle, elevation angle and range parameters can be expressed as indefinite equations, the near-field OFDM signal's 3-D location is obtained by employing the least square method, where the phase differences are based on the average of the estimated subcarriers. Finally, the performance of the proposed algorithm is demonstrated by several simulations.
由于正交频分复用(OFDM)信号在通信、雷达等领域的广泛应用,其在定位领域的需求日益迫切。在均匀圆形阵列(UCA)和近场条件下,本文提出了一种基于相位差的闭式算法,用于估计OFDM信号的三维(3-D)位置(方位角、仰角和距离)。在该算法中,考虑到难以区分OFDM信号子载波的频率,且基于相位的方法总是受到频率估计误差的影响,本文采用稀疏表示(SR)来获得子载波的超分辨率频率和相应相位。此外,由于包括方位角、仰角和距离参数在内的相邻传感器的相位差可以表示为不定方程,通过采用最小二乘法获得近场OFDM信号的三维位置,其中相位差基于估计子载波的平均值。最后,通过若干仿真验证了所提算法的性能。