Analysis of Space Launch Vehicle Failures and Post-Mission Disposal Statistics

Lucía Ayala Fernández, Carsten Wiedemann, Vitali Braun
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引用次数: 8

Abstract

In a time in which a significant number of launch vehicles are being developed, boosted by numerous new space actors demanding cheaper access to space, the need to ensure the reliability of launch vehicles and the performance of a successful Post-Mission Disposal (PMD) is undeniable. The first step to ensure the reliability of new launch vehicles is to analyse previous launch failures, learning from past mistakes. In this paper, the launch failures that occurred over the past 16 years are analysed. These failures are classified as a function of the subsystems involved in the failure, as well as the phase of the mission in which the failure occurred. As a result, the most critical subsystems are identified for every mission phase. Subsequently, the most critical subsystem is further investigated, and its most critical components are identified. Furthermore, aiming to improve the present PMD practices, an understanding of the current status is necessary. This paper provides an overview of the evolution in terms of mean orbital lifetime of the rocket bodies launched since the year 2000. Moreover, the number of manoeuvres performed and the orbital lifetime saved by these manoeuvres is analysed between 2016 and 2020, further classifying the statistics by launcher family and country.

航天运载火箭故障分析及任务后处置统计
在大量运载火箭正在研制中的时代,由于许多新的太空行动者要求以更便宜的价格进入太空,因此不可否认需要确保运载火箭的可靠性和成功的任务后处置的性能。确保新型运载火箭可靠性的第一步是分析以前的发射失败,从过去的错误中吸取教训。本文分析了过去16年中发生的发射故障。这些故障被归类为故障所涉及的子系统的功能,以及发生故障的任务阶段。因此,每个任务阶段都确定了最关键的子系统。随后,对最关键的子系统进行了进一步的研究,并确定了其最关键的组件。此外,为了改进目前的PMD实践,有必要了解其现状。本文概述了自2000年以来发射的火箭体平均轨道寿命的演变。此外,还分析了2016年至2020年间进行的机动次数和这些机动节省的轨道寿命,并按发射器族和国家对统计数据进行了进一步分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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