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Measuring the Value of Flexibility in Space Systems: A Six-Element Framework

机译:衡量空间系统灵活性的价值:六要素框架

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摘要

For many engineering systems, flexibility is an important attribute that allows them to adapt to emerging changes. The existence of flexibility can help space systems adapt themselves to internal/external changes, or even take advantage of new possibilities while in space. Given the potential upfront cost of designing an engineering system to be more flexible, there is a need for a comprehensive framework that allows decision-makers to measure the value of flexible systems design in its different dimensions. Based on insights from the flexibility literature, this paper proposes a unified and comprehensive framework for measuring the value of flexibility in space systems based on six fundamental elements through which flexibility in engineering systems can be mapped. While the illustrative case study presented in this paper focuses on the value of flexibility in a space system, DARPA's Orbital Express program, this framework could generally be applicable for many other engineering systems.
机译:对于许多工程系统而言,灵活性是使其能够适应新出现的变化的重要属性。灵活性的存在可以帮助太空系统适应内部/外部变化,甚至可以在太空中利用新的可能性。鉴于设计一个更灵活的工程系统的潜在前期成本,需要一个综合的框架,使决策者能够在不同的维度上衡量灵活的系统设计的价值。基于灵活性文献的见解,本文基于六个基本要素提出了一个统一而全面的框架,用于衡量空间系统中柔性的价值,通过这些基本要素可以映射工程系统中的柔性。尽管本文提供的说明性案例研究着重于DARPA的Orbital Express程序在太空系统中的灵活性的价值,但该框架通常可适用于许多其他工程系统。

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