Institut National de la Recherche Scientifique-Centre Énergie Matériaux Télécommunications, Montréal, QC H5A 1K6, Canada.
École Polytechnique de Montréal, Montréal, QC H3C 3A7, Canada.
Sensors (Basel). 2018 Aug 6;18(8):2565. doi: 10.3390/s18082565.
A continuous-wave (CW) radar sensor design based on a millimetre-wave six-port interferometer is proposed. A complete sensor prototype is conceived of, fabricated and measured at 77 GHz for short-range professional and industrial applications. This sensor is designed to measure distances and Doppler frequencies with high accuracy, at a reasonable cost. Accurate phase measurements are also performed using the six-port technology, which makes it a promising candidate for CW radar sensing applications. Advances in the performance and functionality of six-port sensors are surveyed to highlight recent progress in this area. These include improvements in design, low power consumption, high signal to noise ratio, compactness, robustness and simplicity in realization. Given the fact that they are easy to fabricate, due to the lack of active circuits and being highly accurate, it is expected that six-port sensors will significantly contribute to the development of human tracking devices and industrial sensors in the near future. The entire circuit prototype, including the transmitter, the receiver antenna, the six-port interferometer and the four power detectors have been integrated on a die. The circuit is fabricated using a hybrid integrated technology on a 127-μm ceramic substrate with a relative permittivity of εr=9.8. Calibrated tuning forks are used to assess the performance of the six-port sensor experimentally for various frequencies.
提出了一种基于毫米波六端口干涉仪的连续波(CW)雷达传感器设计。为短距离专业和工业应用设计了完整的传感器原型,并在 77GHz 下进行了制造和测量。该传感器旨在以合理的成本实现高精度的距离和多普勒频率测量。六端口技术还可实现精确的相位测量,这使其成为 CW 雷达传感应用的有前途的候选方案。本文综述了六端口传感器在性能和功能方面的进展,以突出该领域的最新进展。这些进展包括设计改进、低功耗、高信噪比、紧凑性、鲁棒性和实现的简单性。由于六端口传感器易于制造,由于缺乏有源电路且非常精确,预计它们将在不久的将来为人体跟踪设备和工业传感器的发展做出重大贡献。发射器、接收器天线、六端口干涉仪和四个功率探测器的整个电路原型都已集成在一个芯片上。该电路使用混合集成技术在相对介电常数为 εr=9.8 的 127μm 陶瓷基板上制造。校准音叉用于在各种频率下对六端口传感器的性能进行实验评估。