Kumari Annapurna, Kumar Amitesh
Appl Opt. 2023 Dec 20;62(36):9523-9535. doi: 10.1364/AO.505755.
In this paper, a FMCW-based cooperative 2×2 MIMO photonic radar system using heterodyne detection is presented. The proposed system consists of two separate sensor nodes that use a linear frequency modulated continuous wave signal, which allows simultaneous monostatic and bistatic radar measurement, where the target range and angle of arrival information are extracted. The additional bistatic information enhances the target detection and estimation capabilities with improved accuracy. This accuracy in practicality is affected by the laser phase noise, which degrades the overall system performance. Here, the analytical laser phase noise model for the MIMO system is derived and implemented to analyze its impact on the ranging accuracy of the proposed system. Under the impact of standard white Gaussian laser phase noise assumption, the monostatic and bistatic response of the detected signal is measured and compared using statistics of measurement error. Further, the signal-to-noise ratio and SSB laser phase noise of the monostatic and bistatic response are measured and compared at different target ranges. At last, the phase-noise-limited ranging accuracy of the system is evaluated and analyzed. The concept shown in this work paves the way for advanced photonic radar system applications such as modern radar systems, electronic warfare systems, metrology, and automotive vehicle radar with multiperspective coherent detection.
本文提出了一种基于外差检测的基于调频连续波(FMCW)的协作式2×2多输入多输出(MIMO)光子雷达系统。所提出的系统由两个独立的传感器节点组成,这些节点使用线性调频连续波信号,该信号允许同时进行单基地和双基地雷达测量,从中提取目标距离和到达角信息。额外的双基地信息提高了目标检测和估计能力,并提升了精度。在实际应用中,这种精度会受到激光相位噪声的影响,激光相位噪声会降低整个系统的性能。在此,推导并实现了用于MIMO系统的解析激光相位噪声模型,以分析其对所提出系统测距精度的影响。在标准白高斯激光相位噪声假设的影响下,利用测量误差统计量对检测信号的单基地和双基地响应进行测量和比较。此外,在不同目标距离下测量并比较单基地和双基地响应的信噪比和单边带激光相位噪声。最后,对系统的相位噪声限制测距精度进行评估和分析。这项工作中展示的概念为先进光子雷达系统应用铺平了道路,如现代雷达系统、电子战系统、计量学以及具有多视角相干检测的汽车雷达。