在住宅网络中建立以社区为基础的当地电力市场

IF 1.6 Q4 ENERGY & FUELS
Aziz Saif, Shafi K. Khadem, Michael Conlon, Brian Norton
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引用次数: 5

摘要

本文介绍了建立一个当地电力市场(LEM)的潜力,以促进当地能源社区的部署,以拥有分布式能源(DERs)的活跃客户为中心。为了在减少计算负担的情况下对不同的情况进行全面和详细的研究,本文采用了一种简化的建模方法,其中市场和网络模型以级联、解耦的方式进行模拟。这使得拥有不受网络约束约束的不同DER资产的能源社区能够实现最佳LEM输出。调查涉及通过利用与能源社区内部交易相关的灵活性,量化LEM给能源社区带来的好处。此外,它还展示了客户住宅中不同类型的DERs(主要是光伏(PV)和储能(ES))对LEM结果的影响。LEM成功地证明了与从能源零售商购买能源相关的成本降低,并最大限度地利用当地生产的清洁电力。在研究的DER组合中,光伏和ES方案的组合显示出最高的经济潜力,但在所有研究的情况下,光伏和ES方案的组合会使电压曲线恶化,并且在冬季表现出较高的有功功率损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hosting a community-based local electricity market in a residential network

Hosting a community-based local electricity market in a residential network

This paper presents the potential of building a local electricity market (LEM) to boost the deployment of the local energy communities, centred around active customers with distributed energy resources (DERs). To conduct a comprehensive and detailed study on different cases with reduced computational burdens, this paper adopts a simplified modelling approach where the market and network model simulations are performed in a cascaded, decoupled fashion. This allows achieving the optimal LEM output for the energy community with different DER assets that are not bounded by the network constraints. The investigation involves quantifying the benefits brought by LEM to energy communities by tapping the flexibility associated with trading inside the energy community. Moreover, it presents the influence of different types of DERs (mainly photovoltaics (PV) and energy storage (ES)) in customers' premises on the outcome of the LEM. The LEM demonstrates successfully the reduction of cost associated with the energy purchased from the energy retailer and maximises the consumption of locally generated clean electricity. Among the studied DER portfolios, the combination of PV and ES solution shows the highest economic potential but deteriorates the voltage profiles and shows high active power loss in the winter month among all the cases examined.

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来源期刊
IET Energy Systems Integration
IET Energy Systems Integration Engineering-Engineering (miscellaneous)
CiteScore
5.90
自引率
8.30%
发文量
29
审稿时长
11 weeks
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