卫星链路优化设计

A. Nandra, J. Govil, J. Govil
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引用次数: 6

摘要

卫星通信系统的设计是一个复杂的过程,需要在许多因素之间进行折衷,以在可接受的成本下实现最佳性能。目前,地球同步轨道卫星承载着世界上绝大多数的卫星业务,因此,如何设计空间段的最佳利用率和应答器下行链路EIRP成为链路设计者的当务之急。我们(作者)通过改变一些在链路预算中起重要作用的实体进行了实验,观察了影响整体链路预算概况的完整物理变化。利用这些基于我们工作的结果,我们对卫星用户遇到的一些主要问题进行了理论预测,包括损失、降雨或设备造成的衰减、系统中断等。这些理论预测的结果,促使我们认识到链路预算计算管理不善会导致诸如干扰、天线交叉极化和应答器噪声底上升等重大问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of satellite link design
The design of satellite communication system is a complex process requiring compromises between many factors to achieve the best performance at an acceptable cost. In the present world GEO satellites carry the vast majority of the world's satellite traffic, therefore it becomes utmost for the link designer to design with a optimum utilization of space segment as well as transponder downlink EIRP. We (authors) has performed the experiments by varying some of the entities which play a vital role in the link budget and observed the complete physical changes affecting the overall link budget profile. Using such results based upon our work, we performed a theoretical predictions on some of the major problems experienced by the satellite users which includes losses, and attenuation by rain or by equipments, outage of the system etc. Results of these theoretical predictions, acted as an impetus in knowing that the mismanagement of the link budget calculation lead to vital problems such as interference, cross polarization of the antenna and rising of the noise floor of transponder etc.
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