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Application of the genetic algorithm and downhill simplex methods (Nelder-Mead methods) in the search for the optimum chiller configuration

机译:遗传算法和下坡单纯形方法(Nelder-Mead方法)在寻找最佳冷水机组配置中的应用

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摘要

Methods for searching for the optimum chiller configuration for a heat source plant were examined. In addition to the genetic algorithm (GA), a hybrid of the GA and the Nelder-Mead downhill simplex method was developed. By using the Nelder-Mead downhill simplex method, fewer calculations were required to determine the optimum chiller configuration. Due to applying the GA, the calculations for the developed system did not become trapped in a local optimum, and the algorithm could then determine the global optimum after a few iterations of the Nelder-Mead downhill simplex method. The performance of the developed system was examined for the heating/cooling energy plant of a building; the plant consisted of a centrifugal chiller, a gas-fired absorption chiller, air-source heat pumps, and boilers. It was confirmed that the ability of the GA to find the optimum configuration for the chiller was improved by combining the GA with the Nelder-Mead downhill simplex method.
机译:研究了寻找热源设备最佳冷却器配置的方法。除了遗传算法(GA),还开发了GA和Nelder-Mead下坡单纯形法的混合体。通过使用Nelder-Mead下坡单纯形法,只需很少的计算即可确定最佳的冷却器配置。由于应用了遗传算法,开发系统的计算并没有陷入局部最优中,因此该算法可以在对Nelder-Mead下坡单纯形法进行几次迭代后确定全局最优。对建筑物的供热/制冷能源工厂检查了开发系统的性能;该工厂由离心式制冷机,燃气吸收式制冷机,空气源热泵和锅炉组成。可以肯定的是,通过将GA与Nelder-Mead下坡单纯形法相结合,可以提高GA为冷水机组寻找最佳配置的能力。

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