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首页> 外文期刊>Journal of Energy Storage >Multi-scenario analysis and collaborative optimization of a novel distributed energy system coupled with hybrid energy storage for a nearly zero-energy community
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Multi-scenario analysis and collaborative optimization of a novel distributed energy system coupled with hybrid energy storage for a nearly zero-energy community

机译:一种新型分布式能源系统的多场景分析及协作优化,对几乎零能量群落的混合能量存储

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摘要

Coupling electric vehicles (EV) and hybrid energy storage (HES) with the distributed energy system (DES) can improve energy-saving and emission reduction efficiency and reduce system investment operating costs. However, the system modeling, optimization design, application site, and comprehensive performance analysis of the novel DES need to be further studied. Therefore, this paper combines photovoltaic technology, HES with P2G technology, and EVs with DESs to form a DES that combines HES. Taking the annual net energy import volume and annual cost as targets, a two-layer collaborative optimization method considering both system optimal configuration and operation strategy is used. The novel system will be used to supply energy to a nearly zero energy community. The influence of various parameters is discussed through parameter analysis. The results show that under the operation strategy in charging during the daytime, the annual net energy import and annual value cost of the novel system are 2170772 kWh and 2272786 yuan, respectively; compared with the multi parameter collaborative optimization method, it decreased by 3.1% and 5.0%, respectively. Finally, the two layer collaborative optimization method of this paper is also applicable to the collaborative optimization design of other complex energy systems. The proposed operation strategy is also suitable for other energy systems with source, load, and storage.
机译:耦合电动车辆(EV)和混合储能(HES)与分布式能量系统(DES)可以提高节能减排效率,降低系统投资运营成本。然而,需要进一步研究系统建模,优化设计,应用网站和综合性能分析。因此,本文结合了光伏技术,HES与P2G技术,以及DES的EVS形成一个结合HES的DES。以年度净能源进口量和年成本为目标,使用考虑两个系统最佳配置和操作策略的双层协作优化方法。新颖的系统将用于向几乎零能量社区提供能量。通过参数分析讨论了各种参数的影响。结果表明,根据白天充电的运作策略,新系统的年度净能源进口和年价值成本分别为2170772千瓦时,分别为2272786元;与多参数协同优化方法相比,它分别下降了3.1%和5.0%。最后,本文的两层协作优化方法也适用于其他复能系统的协作优化设计。所提出的操作策略也适用于具有源,负载和存储的其他能量系统。

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