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A decision support tool coupling a causal model and a multi-objective genetic algorithm

机译:一种因果模型与多目标遗传算法相结合的决策支持工具

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摘要

A significant class of decision making problems consists of choosing actions, to be carried out simultaneously, in order to achieve a trade-off between different objectives. When such decisions concern complex systems, decision support tools including formal methods of reasoning and probabilistic models are of noteworthy helpfulness. These models are often built through learning procedures, based on an available knowledge base. Nevertheless, in many fields of application (e.g. when dealing with complex political, economic and social systems), it is frequently not possible to determine the model automatically, and this must then largely be derived from the opinions and value judgements expressed by domain experts. The BayMODE decision support tool (Bayesian Multi Objective Decision Environment), which we describe in this paper, operates precisely in such contexts. The principal component of the program is a multi-objective Decision Network, where actions are executed simultaneously. If the noisy-OR assumptions are applicable, such a the model has a reasonably small number of parameters, even when actions are represented as non-binary variables. This makes the model building procedure accessible and easy. Moreover, BayMODE operates with a multi-objective approach, which provides the decision maker with a set of non-dominated solutions, computed using a multi-objective genetic algorithm.
机译:一类重要的决策问题包括选择要同时执行的动作,以实现不同目标之间的权衡。当此类决策涉及复杂的系统时,包括形式化的推理方法和概率模型在内的决策支持工具将非常有用。这些模型通常基于可用的知识库,通过学习过程来构建。然而,在许多应用领域(例如,在处理复杂的政治,经济和社会系统时),通常无法自动确定模型,因此必须很大程度上从领域专家表达的观点和价值判断中得出。我们在本文中描述的BayMODE决策支持工具(贝叶斯多目标决策环境)正是在这种情况下运行的。该计划的主要组成部分是一个多目标决策网络,其中的行动可以同时执行。如果适用“噪声或”假设,则即使将动作表示为非二元变量,该模型也具有相当少量的参数。这使得模型构建过程易于访问和方便。而且,BayMODE采用多目标方法进行操作,该方法为决策者提供了一组使用多目标遗传算法计算的非主导解决方案。

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