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Antenna Array Synthesis for RFID-Based Electronic Toll Collection

机译:基于RFID的电子收费系统的天线阵列综合

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This paper deals with the synthesis and design of reader antenna for radio-frequency identification (RFID)-based dedicated short-range communication (DSRC) systems. A method for synthesizing a planar antenna array with both the aim of stretching the communication area toward the longitudinal direction and confining it within a certain number of road lanes is described. This method can be used for any working frequency, and two synthesis examples are described taking into account requirements and system parameters of the standards electronic product code (EPC) Gen2 in the ultrahigh frequency (UHF) band, European ETSI EN 302 663 for intelligent transportation system/DSRC, and Chinese GB/T20851-2007 for electronic toll collection/DSRC at 5.8 GHz. After that, the design of a specificn$4 times 4$nplanar antenna array for the case of a UHF EPC Gen2 Chinese band 920.5–924.5 MHz is reported. Microstrip technology is chosen for its advantages of being light, simple, inexpensive, and easy to manufacture. The proposed design presents good matching characteristic and bandwidth, and effectively synthesizes the required communication area (also in the presence of an external radome). Measurement results performed in an anechoic environment together with the experimental verification of the synthesized communication area confirm the validity of the proposed method.
机译:本文针对基于射频识别(RFID)的专用短程通信(DSRC)系统的阅读器天线的综合与设计。描述了一种用于合成平面天线阵列的方法,其目的是将通信区域朝着纵向方向延伸并将其限制在一定数量的车道内。此方法可用于任何工作频率,并在考虑用于智能运输的欧洲ETSI EN 302 663超高频(UHF)频段中标准电子产品代码(EPC)Gen2的要求和系统参数的情况下,描述了两个综合示例。系统/ DSRC,以及用于5.8 GHz的电子收费/ DSRC的中文GB / T20851-2007。之后,设计特定的n $ 4乘以4 $ n平面天线阵列。选择微带技术的原因是它具有轻巧,简单,廉价和易于制造的优点。提出的设计具有良好的匹配特性和带宽,并有效地合成了所需的通信区域(也存在外部天线罩的情况下)。在无声环境中进行的测量结果以及对合成通信区域的实验验证,证实了所提方法的有效性。

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