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Coupled model and optimal operation analysis of power hub for multi-heterogeneous energy generation power system

机译:多异构能源发电系统电力枢纽耦合模型与最优运行分析

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摘要

A multi-heterogeneous energy generation power system (MHEGPS) including wind power, solar power, hydro power, gas power, storage and so on, is an effective way to cope with the increasing demand for energy. In the paper, a novel framework of power hub is introduced to analyze the model of the multi-heterogeneous energy generation power system. A power flow coupled matrix model for the power hub of the multi-heterogeneous energy generation power system is proposed to represent characteristics and connection relationships of energy converters and storages. Further, an optimal operation model to minimize the operation cost is put forward considering the different scenes based on the power hub. Case studies are carried out in different scenes for the multi-heterogeneous energy generation power system. Power generation systems and storage units in different electricity tariff are also discussed. Results show that the electric energy storage units could realize the time sequence shifting of electric energy by charging and discharging to reduce the operation cost of the whole power hub. The real time price (RTP) is superior to the time-of-use price (TOUP) in all cases. Simulation results prove that the optimal operation model is effective and the proposed modeling method provides an alternative method for the complex hybrid energy power system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:包括风力,太阳能,水力,天然气,储能等在内的多异构能源发电系统(MHEGPS)是应对不断增长的能源需求的有效途径。本文介绍了一种新型的电力枢纽框架,以分析多异构能源发电电力系统的模型。提出了一种用于多异构能源发电系统电力枢纽的潮流耦合矩阵模型,以表征换能器与储能器的特性及连接关系。此外,基于电力集线器,提出了考虑不同场景的最优运营模型,以最小化运营成本。案例研究是在多场景下针对多相能源发电系统进行的。还讨论了不同电价的发电系统和存储单元。结果表明,电能存储单元可以通过充放电实现电能的时序转移,从而降低了整个电力枢纽的运行成本。在所有情况下,实时价格(RTP)均优于使用时间价格(TOUP)。仿真结果表明,最优运行模型是有效的,所提出的建模方法为复杂的混合能源电力系统提供了一种替代方法。 (C)2019 Elsevier Ltd.保留所有权利。

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