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Improvement of angular resolution of a millimeterwave imaging system by transmitter location multiplexing

机译:通过发射机位置复用提高毫米波成像系统的角分辨率

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Angular resolution and the angular width of the field of view are in the frame of autonomous intelligent cruise control (AICC) critical system parameters. A promising solution which avoids conventional phased array techniques is to use an array of receivers and the methods of digital beam forming in order to extract the complete 2D radar information. Angular resolution is in this case closely related to the number of receiving antennas respectively downconverters. A complete AICC systems working on these principles using four receivers has been built and published elsewhere. This paper shows that angular resolution can be improved at least by a factor of two without increasing the number of antennas and receivers by multiplexing the transmitter location. Two different configurations are compared. A very cost-effective way is to realize the necessary switching operations in the IF-band. Linear prediction algorithms are applied to fill the arising gap, leading to the full expected lateral resolution while maintaining sufficient side-lobe suppression.
机译:角分辨率和视野角宽度在自主智能巡航控制(AICC)关键系统参数的框架内。避免传统相控阵技术的有前途的解决方案是使用接收器阵列和数字波束形成方法,以提取完整的2D雷达信息。在这种情况下,角分辨率与分别下变频器的接收天线的数量密切相关。已经建立了一个完整的AICC系统,该系统使用四个接收器按照这些原理工作,并已发布在其他地方。本文表明,通过复用发射机位置,可以在不增加天线和接收机数量的情况下,将角分辨率至少提高两倍。比较了两种不同的配置。一种非常经济有效的方法是在IF频段上实现必要的开关操作。应用线性预测算法来填补出现的间隙,从而在保持足够的旁瓣抑制的同时,获得完整的预期横向分辨率。

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