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A novel resource sharing algorithm based on distributed construction for radiant enclosure problems

机译:一种基于分布式构造的辐射封闭问题资源共享新算法

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This paper demonstrates a novel approach to solving inverse radiant enclosure problems based on distributed construction. Specifically, the problem of determining the temperature distribution needed on the heater surfaces to achieve a desired design surface temperature profile is recast as a distributed construction problem in which a shared resource, temperature, is distributed by computational agents moving blocks. The sharing of blocks between agents enables them to achieve their desired local state, which in turn achieves the desired global state. Each agent uses the current state of their local environment and a simple set of rules to determine when to exchange blocks, each block representing a discrete unit of temperature change. This algorithm is demonstrated using the established two-dimensional inverse radiation enclosure problem. The temperature profile on the heater surfaces is adjusted to achieve a desired temperature profile on the design surfaces. The resource sharing algorithm was able to determine the needed temperatures on the heater surfaces to obtain the desired temperature distribution on the design surfaces in the nine cases examined.
机译:本文演示了一种解决基于分布式构造的反辐射封闭问题的新颖方法。具体地,将确定加热器表面上的温度分布以实现期望的设计表面温度分布图的问题重塑为分布式构造问题,其中通过计算代理移动块来分配共享资源温度。代理之间的块共享使他们能够实现其所需的局部状态,从而又实现了所需的全局状态。每个代理都使用其本地环境的当前状态和一组简单的规则来确定何时更换模块,每个模块代表温度变化的离散单位。使用已建立的二维逆辐射包围问题证明了该算法。调节加热器表面上的温度曲线,以在设计表面上达到所需的温度曲线。资源共享算法能够确定加热器表面上所需的温度,从而在所检查的九种情况下在设计表面上获得所需的温度分布。

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