Zhang Fangzheng, Gao Bindong, Pan Shilong
Opt Express. 2018 Jun 25;26(13):17529-17540. doi: 10.1364/OE.26.017529.
A photonics-based multiple-input-multiple-output (MIMO) radar is proposed and demonstrated based on wavelength-division-multiplexed broadband microwave photonic signal generation and processing. The proposed radar has a large operation bandwidth, which helps to achieve an ultra-high range resolution. Compared with a monostatic radar, improved radar performance and extended radar applications originated from the MIMO architecture can be achieved. In addition, low-speed electronics with real-time signal processing capability is feasible. A photonics-based 2 × 2 MIMO radar is established with a 4-GHz bandwidth in each transmitter and a sampling rate of 100 MSa/s in the receiver. Performance of the photonics-based multi-channel signal generation and processing is evaluated, and an experiment for direction of arrival (DOA) estimation and target positioning is demonstrated, through which the feasibility of the proposed radar system can be verified.
基于波分复用宽带微波光子信号产生与处理技术,提出并演示了一种基于光子学的多输入多输出(MIMO)雷达。所提出的雷达具有较大的工作带宽,这有助于实现超高距离分辨率。与单基地雷达相比,源于MIMO架构的雷达性能得到改善,雷达应用得到扩展。此外,具有实时信号处理能力的低速电子设备是可行的。建立了一个基于光子学的2×2 MIMO雷达,每个发射机的带宽为4 GHz,接收机的采样率为100 MSa/s。评估了基于光子学的多通道信号产生与处理性能,并演示了到达方向(DOA)估计和目标定位实验,从而验证了所提出雷达系统的可行性。