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A Self-Structuring Impedance Matcher for In-Vehicle Digital Audio Broadcasting Applications

机译:车载数字音频广播应用中的自结构阻抗匹配器

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This paper proposes an adaptive impedance matching subsystem, called self-structuring impedance matcher (SSIM), for in-vehicle digital audio broadcasting (DAB) applications. The goal of the SSIM is to make antennas originally aiming at other vehicular applications, such as a digital television (DTV, 470–894 MHz) and an interphone car radio (136–174 MHz), operate in the targeted DAB frequency band (170–240 MHz), thereby lowering the startup cost of DAB devices. The SSIM consists of a template of a matching circuit, a microprocessor, and a receiving-type sensor. The template uses a nonuniform microstrip line interconnected with relay switches. To enhance the dynamic range and reduce the insertion loss for the template simultaneously, this work employs a new design technique based on solving the mathematical programming problem of matching requirements. The resultant matching domain covers a large area of the Smith chart, although only five switches are used. Experimental results show that the SSIM successfully adapts an interphone/DTV antenna into a DAB receiving mode. The operational bandwidth meets the DAB specification, and the transducer gain is larger than −1.83 dB.
机译:本文针对车载数字音频广播(DAB)应用提出了一种自适应阻抗匹配子系统,称为自结构阻抗匹配器(SSIM)。 SSIM的目标是使最初针对其他车载应用(例如数字电视(DTV,470–894 MHz)和对讲机收音机(136–174 MHz))的天线在目标DAB频段(170 –240 MHz),从而降低了DAB设备的启动成本。 SSIM由匹配电路的模板,微处理器和接收型传感器组成。该模板使用与继电器开关互连的非均匀微带线。为了提高动态范围并同时减少模板的插入损耗,这项工作采用了一种新的设计技术,该技术基于解决匹配要求的数学编程问题。尽管只使用了五个开关,但最终的匹配域覆盖了史密斯圆图的大部分区域。实验结果表明,SSIM成功地将对讲机/ DTV天线调整为DAB接收模式。工作带宽符合DAB规范,并且传感器增益大于-1.83 dB。

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