A Decoupled-and-Reduced Method for Configuration Uncertainty Propagation of Gravitational-Wave Observatory

Zhe Zhang, Jianchao Zheng, Xiangyu Li*, Huan Ren

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

A space-based gravitational-wave observatory usually contains three spacecraft, forming a triangle configuration in space for interferometry. Configuration stability is significant for a gravitational-wave observatory to ensure interferometry detection performance. Although a pre-designed configuration can satisfy the stability requirements, the stability can be impacted by uncertainties such as orbit insertion errors, which necessitates the investigation of configuration uncertainty propagation. Current configuration uncertainty propagation methods suffer from drawbacks related to high computational burden. To this end, this paper presents a decoupled-and-reduced method. First, a decoupled-and-reduced state transition tensor (DR-STT) is developed for orbital uncertainty propagation. The conventional STT is reduced by capturing high-order dominant secular terms. The secular and periodic terms are decoupled and integrated independently to reduce computational costs further. Then, high-order analytical derivatives are proposed to transform the uncertainties in orbital states into uncertainties in configuration stability indexes. The proposed method is successfully applied to solve the configuration uncertainty propagation problem of the Laser Interferometer Space Antenna project (LISA). Simulation results show that the proposed method can provide results comparable to the conventional STT-based method, but it requires only one-third of the computational time.

Original languageEnglish
Title of host publication2024 3rd International Symposium on Aerospace Engineering and Systems, ISAES 2024
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages391-397
Number of pages7
ISBN (Electronic)9798350350418
DOIs
Publication statusPublished - 2024
Event3rd International Symposium on Aerospace Engineering and Systems, ISAES 2024 - Hybrid, Nanjing, China
Duration: 22 Mar 202424 Mar 2024

Publication series

Name2024 3rd International Symposium on Aerospace Engineering and Systems, ISAES 2024

Conference

Conference3rd International Symposium on Aerospace Engineering and Systems, ISAES 2024
Country/TerritoryChina
CityHybrid, Nanjing
Period22/03/2424/03/24

Keywords

  • Gravitational-wave observatory
  • Stability index
  • State transition tensor
  • Uncertainty propagation

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