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Laser interferometer space antenna dynamics and controls model

机译:激光干涉仪空间天线动力学与控制模型

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摘要

A 19 degree-of-freedom (DOF) dynamics and controls model of a laser interferometer space antenna (LISA) spacecraft has been developed. This model is used to evaluate the feasibility of the dynamic pointing and positioning requirements of a typical LISA spacecraft. These requirements must be met for LISA to be able to successfully detect gravitational waves in the frequency band of interest (0.1-100 mHz). The 19-DOF model includes all rigid-body degrees of freedom. A number of disturbance sources, both internal and external, are included. Preliminary designs for the four control systems that comprise the LISA disturbance reduction system (DRS) have been completed and are included in the model. Simulation studies are performed to demonstrate that the LISA pointing and positioning requirements are feasible and can be met. [References: 5]
机译:已经开发出一种19自由度(DOF)动力学和控制模型的激光干涉仪空间天线(LISA)航天器。该模型用于评估典型LISA航天器动态指向和定位要求的可行性。 LISA必须满足这些要求,才能成功检测到感兴趣的频段(0.1-100 mHz)中的重力波。 19自由度模型包括所有刚体自由度。包括许多内部和外部干扰源。组成LISA干扰减少系统(DRS)的四个控制系统的初步设计已经完成,并已包含在模型中。仿真研究表明LISA指向和定位要求是可行的并且可以满足。 [参考:5]

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