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DESIGN OF COMPLEX ENGINEERING SYSTEMS USING MULTIAGENT COORDINATION

机译:多读协调复杂工程系统的设计

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In complex engineering systems, complexity may arise by design, or as a by-product of the system's operation. In either case, the root cause of complexity is the same: the unpredictable manner in which interactions among components modify system behavior. Traditionally, two different approaches are used to handle such complexity: (ⅰ) a centralized design approach where the impacts of all potential system states and behaviors resulting from design decisions must be accurately modeled; and (ⅱ) an approach based on externally legislating design decisions, which avoid such difficulties, but at the cost of expensive external mechanisms to determine trade-offs among competing design decisions. Our approach is a hybrid of the two approaches, providing a method in which decisions can be reconciled without the need for either detailed interaction models or external mechanisms. A key insight of this approach is that complex system design, undertaken with respect to a variety of design objectives, is fundamentally similar to the multiagent coordination problem, where component decisions and their interactions lead to global behavior. The design of a race car is used as the case study. The results of this paper demonstrate that a team of autonomous agents using a cooperative revolutionary algorithm can effectively design a Formula racing vehicle.
机译:在复杂的工程系统,复杂性可以通过设计出现,或作为系统运行的副产品。在任一情况下,复杂性的根本原因是相同的:在不可预知的方式,其中组件之间的交互修改系统行为。传统上,两种不同的方法来处理这种复杂性:(ⅰ)集中式设计方式,所有潜在的系统状态及行为,包括从设计决策造成的影响必须进行精确建模;和(ⅱ)的基础上的方法外立法设计决策,这避免这种困难,但在昂贵的外部机制的成本,以确定竞争的设计决策间的权衡。我们的方法是这两种方法的混合,提供其中决策可以无需任何详细交互模型或外部机构进行协调的方法。这种方法的一个重要观点是,复杂的系统设计,对于开展的各种设计目标,是从根本上类似于多智能体的协调问题,其中部分决定及其相互作用导致全球性的行为。赛车的设计作为案例研究。本文的结果表明,自主代理的使用协同算法革命性的团队能有效地设计一个方程式赛车车辆。

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