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Risk-Adjusted Mission Value: Trading Off Mission Risk for Mission Value

机译:风险调整后的任务价值:以任务风险为代价来权衡任务价值

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This article develops a decision-theoretic methodology for the risk-adjusted mission value (RAMV) for selecting between alternative missions in the presence of uncertainty in the outcomes of the missions. This methodology permits trading off mission risk for mission value, something that probabilistic risk analysis cannot do unless it explicitly incorporates both mission value and risk aversion of the project management. The methodology, in its complete implementation, is consistent with the decision theory known as expected utility theory, although it differs from conventional decision theory in that the probabilities and all but one of the utilities are not those of the decision maker. The article also introduces a new interpretation of risk aversion. The methodology is consistent with the elementary management concept concerning division of labor. An example is presented for selecting between discrete alternatives―four landing sites on Mars. A second example is presented for selecting among a set of continuous alternatives―a comet flyby distance. The methodology is developed within the context of scientific missions, but the methodology is equally applicable to any situation requiring outcome value judgments, probability judgments, and risk aversion judgments by different constituencies.
机译:本文为风险调整后的任务价值(RAMV)开发了一种决策理论方法,用于在任务结果存在不确定性的情况下在替代任务之间进行选择。这种方法可以权衡任务价值与任务价值,而概率风险分析无法做到这一点,除非它明确地结合了任务价值和项目管理的风险规避。尽管该方法论与常规决策理论的不同之处在于,概率和除一种效用之外的所有效用都不是决策者的效用,但该方法的完整实施与被称为期望效用理论的决策理论是一致的。本文还介绍了风险规避的新解释。该方法与关于分工的基本管理概念一致。给出了一个在离散的备选方案之间进行选择的示例-火星上的四个登陆点。给出了第二个示例,用于在一组连续的替代方案中进行选择-彗星飞越距离。该方法是在科学任务的背景下开发的,但是该方法同样适用于需要不同选区进行结果价值判断,概率判断和风险规避判断的任何情况。

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