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Development Of Earth Station Receiving Antenna And Digital Filter Design Analysis For C-Band VSAT

机译:地球站接收天线的开发和C波段VSAT的数字滤波器设计分析

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Abstract: This paper describes the performance improvement of C-band VSAT receiving antenna. In this work, the gain and efficiency of C-band VSAT have been evaluated and then the reflector design is developed with the help of ICARA and MATLAB environment. The proposed design meets the good result of antenna gain and efficiency. The typical gain of prime focus parabolic reflector antenna is 30 dB to 40dB. And the efficiency is 60% to 80% with the good antenna design. By comparing with the typical values, the proposed C-band VSAT antenna design is well optimized with gain of 38dB and efficiency of 78%. In this paper, the better design with compromise gain performance of VSAT receiving parabolic antenna using ICARA software tool and the calculation of C-band downlink path loss is also described. The particular prime focus parabolic reflector antenna is applied for this application and gain of antenna, radiation pattern with far field, near field and the optimized antenna efficiency is also developed. The objective of this paper is to design the downlink receiving antenna of VSAT satellite ground segment with excellent gain and overall antenna efficiency. The filter design analysis is base on Kaiser window method and the simulation results are also presented in this paper.
机译:摘要:本文描述了C波段VSAT接收天线的性能改进。在这项工作中,评估了C波段VSAT的增益和效率,然后借助ICARA和MATLAB环境开发了反射器设计。所提出的设计满足了天线增益和效率的良好结果。主焦点抛物面反射器天线的典型增益为30 dB至40dB。好的天线设计可使效率达到60%至80%。通过与典型值进行比较,提出的C波段VSAT天线设计得到了很好的优化,增益为38dB,效率为78%。本文还介绍了使用ICARA软件工具更好地设计VSAT接收抛物线天线增益性能的折衷方案,并介绍了C波段下行链路路径损耗的计算方法。特别的抛物面抛物面反射器天线用于该应用,并且还开发了天线增益,具有远场,近场的辐射方向图和优化的天线效率。本文的目的是设计具有良好增益和整体天线效率的VSAT卫星地面段的下行链路接收天线。滤波器设计分析是基于Kaiser窗方法的,并给出了仿真结果。

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