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Interaction of combined cycle power plant (CCPP) and power system at two levels of performance optimization

机译:组合循环发电厂(CCPP)和电力系统在两层性能优化中的相互作用

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In this paper, considering two different scenarios, combined cycle power plant was optimized to reduce total system costs. In the first scenario, parameters of combined cycle power plant were optimized based on power system constraints. But, in the second scenario, they were optimized considering constraints of the power plant. Cost function of power plants includes consumable fuel price (natural gas), maintenance and repair cost and exergy destruction cost, which was fitted with a quadratic equation in this investigation. In both scenarios, combined cycle power plants were optimized by genetic algorithm based on two objective functions of total exergy efficiency of power plant and price function of generated power. The results obtained from these two scenarios showed that the second scenario introduced more optimized cost function than the first one. As a result, calculating cost function of power plant apart from the power system reduced costs of combined cycle power plant and total system and applying constraints of the power system to power plants discharged them from their optimized function and increased the costs.
机译:在本文中,考虑到两种不同的情景,优化了组合的循环发电厂以减少总系统成本。在第一场景中,基于电力系统约束优化了组合循环发电厂的参数。但是,在第二种情况下,考虑到电厂的约束进行了优化。发电厂的成本函数包括消耗品燃料价格(天然气),维护和维修成本和漏洞的破坏成本,在这次调查中配备了二次方程。在这两种情况下,基于两种目标函数的电厂总电力效率的两个目标函数和产生功率的价格函数的遗传算法优化了组合循环发电厂。从这两个场景获得的结果表明,第二种情况引入了比第一个更优化的成本函数。结果,除了电力系统外,电厂的成本函数降低了组合循环发电厂的成本和总系统的成本,并将电力系统的限制从优化的功能放电,增加了它们的成本。

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