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PRELIMINARY OPTIMAL ORBIT DESIGN FOR THE LASER INTERFEROMETER SPACE ANTENNA (LISA)

机译:激光干涉仪空间天线(LISA)的初步最佳轨道设计

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In this paper we present a preliminary optimal orbit analysis for the Laser Interferometer Space Antenna (LISA). LISA is a NASA/ESA mission to study gravitational waves and test predictions of general relativity. The nominal formation consists of three spacecraft in heliocentric orbits at 1 AU and trailing the Earth by twenty degrees. This configuration was chosen as a trade off to reduce the noise sources that will affect the instrument and to reduce the fuel to achieve the final orbit. We present equations for the nominal orbit design and discuss several different measures of performance for the LISA formation. All of the measures directly relate the formation dynamics to science performance. Also, constraints on the formation dynamics due to spacecraft and instrument limitations are discussed. Using the nominal solution as an initial guess, the formation is optimized using Sequential Quadratic Programming to maximize the performance while satisfying a set of nonlinear constraints. Results are presented for each of the performance measures.
机译:在本文中,我们提出了激光干涉仪空间天线(LISA)的初步最佳轨道分析。 Lisa是一种NASA / ESA任务,用于研究重力波浪和一般相对性的测试预测。标称形成由三个航天器在1 AU的皮肤上的三个航天器组成,并在20度下落后地球。选择该配置作为折衷以减少将影响仪器的噪声源并减少燃料以实现最终轨道。我们为标称轨道设计提供了方程,并讨论了LISA形成的几种性能措施。所有措施直接将地层动态与科学表现相关联。此外,讨论了由于航天器和仪器限制而对地层动态的约束。使用标称解决方案作为初始猜测,使用顺序二次编程优化了形成,以最大化性能,同时满足一组非线性约束。每个性能措施都提供了结果。

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