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Design, Simulation and Experimental Validation of Patch Antenna in S-Band Satellite Communication

机译:S波段卫星通信中贴片天线的设计,仿真与实验验证

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In worldwide, almost geosynchronous satellites are using radio communication from broadband to narrowband which include broadcasting, positioning and telecommunication. At present, there are different types of satellite communications starting from UHF to Ka-band. Out of these satellite communications, S-band and C-band satellite communications are the suitable for high speed data, voice and video transmissions. For communicating with a satellite, a special antenna is required, and it should have some unique characteristics such as low VSWR, circular polarization, high gain, reasonable axial ratio and higher beam width. For satellite communication, micro-strip patch antenna is appropriate because it can be designed to use as a circular polarized antenna by modifying its shape and easily developing a 90° phase shift in the antenna. Square patch antenna has been taken and designed for S-band satellite communication. This antenna is designed for receiving purpose. After designing, the antenna is simulated in simulated software for the different values like gain, axial ratio, VSWR and 3 dB beam width. After simulation, the antenna is fabricated and measured for the same characteristics. Moreover, the simulated results are obtained using CST MW STUDIO 2015 software, and the antenna is fabricated using CNC machine. Apart from this, experimental results are obtained using network analyzer and anechoic chamber. VSWR measurement of antennas has been carried out using network analyzer. Gain and radiation patterns have been carried out using anechoic chamber. Validation of the antenna has been done based on the comparison of simulation and measurement results in S-band satellite communication.
机译:在世界范围内,几乎地球同步卫星正在使用从宽带到窄带的无线电通信,其中包括广播,定位和电信。当前,有从UHF到Ka波段的各种类型的卫星通信。在这些卫星通信中,S波段和C波段卫星通信适合于高速数据,语音和视频传输。为了与卫星通信,需要使用特殊的天线,并且天线应具有一些独特的特性,例如低驻波比,圆极化,高增益,合理的轴向比和更大的波束宽度。对于卫星通信,微带贴片天线是合适的,因为它可以通过修改其形状并轻松在天线中产生90°相移而设计为用作圆极化天线。方形贴片天线已被采用并设计用于S波段卫星通信。该天线是专为接收目的而设计的。设计完成后,在仿真软件中对天线进行仿真,以获取不同的值,例如增益,轴向比,VSWR和3 dB波束宽度。经过仿真后,天线被制造出来并进行了相同特性的测量。此外,使用CST MW STUDIO 2015软件获得了仿真结果,并使用CNC机床制造了天线。除此之外,使用网络分析仪和消声室可获得实验结果。天线的VSWR测量已使用网络分析仪进行。增益和辐射图已经使用消声室进行了。基于S波段卫星通信中仿真和测量结果的比较,已经完成了天线的验证。

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