Semi-Analytical Model for Design and Analysis of On-Orbit Servicing Architecture

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Main Authors: Ho, Koki, Wang, Hai, DeTrempe, Paul A., Jonchay, Tristan Sarton du, Tomita, Kento
Format: Preprint
Published: 2019
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author Ho, Koki
Wang, Hai
DeTrempe, Paul A.
Jonchay, Tristan Sarton du
Tomita, Kento
author_facet Ho, Koki
Wang, Hai
DeTrempe, Paul A.
Jonchay, Tristan Sarton du
Tomita, Kento
contents Robotic on-orbit servicing (OOS) is expected to be a key technology and concept for future sustainable space exploration. This paper develops a semi-analytical model for OOS systems analysis, responding to the growing needs and ongoing trend of robotic OOS. An OOS infrastructure system is considered whose goal is to provide responsive services to the random failures of a set of customer modular satellites distributed in space (e.g., at the geosynchronous equatorial orbit). The considered OOS architecture is comprised of a servicer that travels and provides module-replacement services to the customer satellites, an on-orbit depot to store the spares, and a series of launch vehicles to replenish the depot. The OOS system performance is analyzed by evaluating the mean waiting time before service completion for a given failure and its relationship with the depot capacity. Leveraging the queueing theory and inventory management methods, the developed semi-analytical model is capable of analyzing the OOS system performance without relying on computationally costly simulations. The effectiveness of the proposed model is demonstrated using a case study compared with simulation results. This paper is expected to provide a critical step to push the research frontier of analytical/semi-analytical models development for complex space systems design.
format Preprint
id arxiv_https___arxiv_org_abs_1910_03169
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle Semi-Analytical Model for Design and Analysis of On-Orbit Servicing Architecture
Ho, Koki
Wang, Hai
DeTrempe, Paul A.
Jonchay, Tristan Sarton du
Tomita, Kento
Performance
Systems and Control
Space Physics
Robotic on-orbit servicing (OOS) is expected to be a key technology and concept for future sustainable space exploration. This paper develops a semi-analytical model for OOS systems analysis, responding to the growing needs and ongoing trend of robotic OOS. An OOS infrastructure system is considered whose goal is to provide responsive services to the random failures of a set of customer modular satellites distributed in space (e.g., at the geosynchronous equatorial orbit). The considered OOS architecture is comprised of a servicer that travels and provides module-replacement services to the customer satellites, an on-orbit depot to store the spares, and a series of launch vehicles to replenish the depot. The OOS system performance is analyzed by evaluating the mean waiting time before service completion for a given failure and its relationship with the depot capacity. Leveraging the queueing theory and inventory management methods, the developed semi-analytical model is capable of analyzing the OOS system performance without relying on computationally costly simulations. The effectiveness of the proposed model is demonstrated using a case study compared with simulation results. This paper is expected to provide a critical step to push the research frontier of analytical/semi-analytical models development for complex space systems design.
title Semi-Analytical Model for Design and Analysis of On-Orbit Servicing Architecture
topic Performance
Systems and Control
Space Physics
url https://arxiv.org/abs/1910.03169