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首页> 外文期刊>Journal of power sources >Optimal planning of Molten Carbonate Fuel Cell Power Plants at distribution networks considering Combined Heat, Power and Hydrogen production
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Optimal planning of Molten Carbonate Fuel Cell Power Plants at distribution networks considering Combined Heat, Power and Hydrogen production

机译:考虑热,电,氢联合生产的熔融碳酸盐燃料电池发电厂在配电网的优化规划

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摘要

In this paper, a stochastic model is used for optimal planning of Molten Carbonate Fuel Cell Power Plants (MCFCPPs) in distribution network for producing Combined Heat, Power, and Hydrogen (CHPH). Total production costs of electrical energy, thermal energy, and hydrogen, emissions of MCFCPPs and network, and voltage deviation are considered in the objective function. In this paper, location and operation of MCFCPPs are taken into consideration while their investment cost is not taken into account In this model, the uncertainties in forecasting the electrical and thermal loads, the pressures of hydrogen, oxygen, and carbon dioxide, and the indeterminacy of the nominal temperature of MCFCPP are considered using 2m + 1 Point Estimate Method (2m + 1 PEM). The problem of optimal planning of MCFCPPs as CHPH is of mixed integer nonlinear nature. So, a Self Adaptive Learning Bat-inspired Algorithm (SALBA) is employed for solving this problem. The problem is solved as a multi-objective one to achieve the best Pareto optimal set. A set of non-dominated solutions are saved in a repository and the proposed method is evaluated on a 69-bus distribution system.
机译:在本文中,使用随机模型对分配网络中熔融碳酸盐燃料电池发电厂(MCFCPPs)的最优计划进行规划,以生产热电联产(CHPH)。在目标函数中考虑了电能,热能和氢气的总生产成本,MCFCPP和网络的排放以及电压偏差。本文考虑了MCFCPP的位置和操作,而没有考虑其投资成本。在此模型中,预测电和热负荷的不确定性,氢,氧和二氧化碳的压力以及不确定性使用2m + 1点估计方法(2m + 1 PEM)考虑MCFCPP的标称温度的最大值。作为CHPH的MCFCPPs的最佳计划问题具有混合整数非线性性质。因此,采用自适应学习蝙蝠启发式算法(SALBA)来解决此问题。该问题作为获得最佳帕累托最优集的多目标解决。一组非主导解决方案保存在存储库中,并在69总线配电系统上评估了所提出的方法。

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