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Determination of locations of calibration earth stations for ground based beam forming in satellite systems

机译:确定用于卫星系统中地面波束形成的校准地球站的位置

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With growing need for satellite based communication systems, there is increasing focus on the technological advancements that can reduce the cost and SWaP (Size, Weight, and Power) of a satellite payload without compromising the achieved bandwidth efficiency. In a recent technological development, the signal processing for payload antenna beamforming is moved to the ground. The resultant scheme, called Ground-Based Beam Forming or GBBF (i) provides for a significant simplification to the satellite payload design, (ii) allows for improved system performance, and (iii) results in better system flexibility. A critical requirement in the GBBF system is a real-time calibration of payload antenna array. In one scheme for GBBF calibration, several transceiver systems, called Calibration Earth Stations or CESs, are placed at strategic locations within the satellite antenna coverage. CES location determination is an important system design problem for GBBF system development, as an improper choice of locations of CESs can either result in more number of CESs than necessary (thereby increasing the system cost and the CES site maintenance concerns) and/or it can deteriorate the performance of GBBF calibration. This paper describes a solution to this problem. Two criteria that the chosen CES locations should attain are described. Determination of the requisite number of CESs and their locations is cast as a problem of multi-dimensional nonlinear optimization of the selected criteria. A solution based on the stochastic annealing method is developed and its results are presented. This approach has been successfully applied in the GBBF system development for a European GEO satellite system.
机译:随着基于卫星的通信系统的需求不断增长,可以越来越侧对技术进步,可以降低卫星有效载荷的成本和交换(尺寸,重量和功率)而不会影响实现的带宽效率。在最近的技术开发中,有效载荷天线波束形成的信号处理被移动到地面。所得方案,称为地基波束形成或GBBF(i)为卫星有效载荷设计提供了显着的简化,(ii)允许改进的系统性能,(iii)导致更好的系统灵活性。 GBBF系统中的关键要求是有效载荷天线阵列的实时校准。在一个用于GBBF校准的方案中,若干收发器系统,称为校准地球站或塞塞,被放置在卫星天线覆盖范围内的战略位置。 CES的位置确定为GBBF系统发展的一个重要的制度设计问题,由于塞斯的位置的选择不当可以导致更多数量塞斯比必要的(从而增加了系统成本和CES现场维护问题)和/或它可以恶化GBBF校准的性能。本文介绍了解决这个问题的解决方案。描述了所选择的CES位置应该实现的两个标准。确定必要的CESS及其位置作为所选标准的多维非线性优化的问题。开发了一种基于随机退火方法的溶液及其结果。这种方法已成功应用于欧洲地理卫星系统的GBBF系统开发。

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