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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A 77–81-GHz 16-Element Phased-Array Receiver With $pm {hbox{50}}^{circ}$ Beam Scanning for Advanced Automotive Radars
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A 77–81-GHz 16-Element Phased-Array Receiver With $pm {hbox{50}}^{circ}$ Beam Scanning for Advanced Automotive Radars

机译:具有 $ pm {hbox {50}} ^ {circ} $ 先进汽车雷达的光束扫描

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A 16-element phased-array receiver has been developed for advanced W-band automotive radars. The phased-array receiver is based on a single SiGe chip with RF beamforming capabilities, which is packaged using low-cost bond-wire techniques and attached to a 16-element linear microstrip array. The antenna results in a directivity of 29.3 dB and a gain of 28.0 dB at 77–81 GHz, and can be scanned to in the azimuth plane in steps. The packaging details are presented together with the steps taken to ensure a wideband impedance match and low coupling between the phased-array channels. Gain measurements done at 79 GHz agree well with simulations. The 16-element phased array receiver was used with a 2-element frequency-modulated continuous-wave transmitter at 76.5–77 GHz and high-resolution millimeter-wave images were obtained. The work shows that complex millimeter-wave phased arrays can be packaged using traditional bond-wire techniques, and can be a powerful solution for advanced automotive radars.
机译:已经开发出一种用于先进W波段汽车雷达的16单元相控阵接收机。相控阵接收机基于具有射频波束形成功能的单个SiGe芯片,该芯片使用低成本的键合线技术进行封装,并与16个元素的线性微带阵列相连。天线的指向性为29.3 dB,在77–81 GHz处的增益为28.0 dB,可以逐步在方位平面中进行扫描。介绍了封装细节以及为确保宽带阻抗匹配和相控阵通道之间的低耦合而采取的步骤。在79 GHz处完成的增益测量与仿真非常吻合。 16元素相控阵接收机与2元素频率调制连续波发射机一起使用,频率为76.5–77 GHz,并且可以获得高分辨率毫米波图像。这项工作表明,复杂的毫米波相控阵可以使用传统的键合线技术进行封装,并且可以成为先进汽车雷达的强大解决方案。

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