首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >FADSat: A system engineering tool for the conceptual design of geostationary Earth orbit satellites platform
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FADSat: A system engineering tool for the conceptual design of geostationary Earth orbit satellites platform

机译:FADSat:用于对地静止地球轨道卫星平台概念设计的系统工程工具

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With regard to the increasing use of satellites platform in the geostationary orbit, a system engineering tool, FADSat, has been developed to reduce the prohibitive cost and time of their conceptual design phase. The proposed tool effectively conducts the design of the geostationary Earth orbit satellite platform lying in the mass range of 1-7000 kg. The main feature of the FADSat is to determine the conceptual design of the satellite platform with both high time performance and acceptable accuracy. Using this tool, one can readily extract the characteristics of the structure, attitude determination and control, command and data handling, electrical power, and other subsystems of a satellite. The FADSat exploits a statistical design model in the first instance to yield a rough estimation of the satellite design, i.e. a rapid extraction of the budgets for mass, power, and dimensions of the satellite subsystems as well as the cost of the satellite. Then, using a parametric design model approach, it performs subsystems design more accurately and ascertains their component specifications in terms of a catalog of products with corresponding manufacturers. A database of 462 geostationary Earth orbit communication satellites (with 30 different geostationary Earth orbit satellites platforms (launched from 2000 to 2017 has been used in this paper to implement the statistical design model approach. This tool developed in the LabVIEW software is capable of contributing to the satellite production phases as a connection to the hardware simulators of different subsystems. Herein, after describing the general concepts utilized in the satellite design, we have introduced various parts and relations of the FADSat tool. The tool's accuracy was amply verified through flight prototypes, indicating an average error of 15% in the obtained results.
机译:关于对地静止轨道上卫星平台的日益使用,已经开发了系统工程工具FADSat,以减少概念设计阶段的过高成本和时间。所提出的工具有效地进行了质量范围在1-7000 kg的对地静止地球轨道卫星平台的设计。 FADSat的主要特征是确定具有高时间性能和可接受精度的卫星平台的概念设计。使用该工具,可以轻松提取卫星的结构,姿态确定和控制,命令和数据处理,电力以及其他子系统的特征。 FADSat首先利用统计设计模型对卫星设计进行粗略估算,即快速提取卫星子系统的质量,功率和尺寸以及卫星成本的预算。然后,使用参数化设计模型方法,它可以更准确地执行子系统设计,并根据与相应制造商的产品目录确定其组件规格。本文使用了462颗地球静止轨道通信卫星(具有2000年至2017年推出的30种不同的地球静止轨道卫星平台)的数据库来实现统计设计模型方法。在LabVIEW软件中开发的该工具能够为卫星生产阶段连接到不同子系统的硬件仿真器,这里,在描述卫星设计中使用的一般概念之后,我们介绍了FADSat工具的各个部分和关系,该工具的准确性通过飞行原型得到了充分验证,表示所得结果的平均误差为15%。

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