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首页> 外文期刊>International journal of green energy >Automated energy management in distributed electricity systems: An EEPOS approach
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Automated energy management in distributed electricity systems: An EEPOS approach

机译:分布式电力系统中的自动化能源管理:EEPOS方法

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The increasing capacity of distributed electricity generation brings new challenges in maintaining a high security and quality of electricity supply. New techniques are required for grid support and power balance. The highest potential for these techniques is to be found on the part of the electricity distribution grid.This article addresses this potential and presents the EEPOS project's approach to the automated management of flexible electrical loads in neighborhoods. The management goals are (i) maximum utilization of distributed generation in the local grid, (ii) peak load shaving/congestion management, and (iii) reduction of electricity distribution losses. Contribution to the power balance is considered by applying two-tariff pricing for electricity.The presented approach to energy management is tested in a hypothetical sensitivity analysis of a distribution feeder with 10 households and 10 photovoltaic (PV) plants with an average daily consumption of electricity of 4.54kWh per household and a peak PV panel output of 0.38kW per plant. Energy management shows efficient performance at relatively low capacities of flexible load. At a flexible load capacity of 2.5% (of the average daily electricity consumption), PV generation surplus is compensated by 34-100% depending on solar irradiance. Peak load is reduced by 30% on average. The article also presents the load shifting effect on electricity distribution losses and electricity costs for the grid user.
机译:分布式发电能力的不断提高在保持高安全性和高质量的电力供应方面带来了新的挑战。电网支持和功率平衡需要新技术。这些技术的最大潜力可在配电网部分找到。本文介绍了这一潜力,并提出了EEPOS项目的方法,用于自动管理社区中灵活的电力负荷。管理目标是(i)最大限度地利用本地电网中的分布式发电,(ii)高峰负荷削减/拥堵管理以及(iii)减少配电损失。通过采用两价电价来考虑对电力平衡的贡献。在假设的敏感性分析中,对10个家庭和10个光伏(PV)电厂的配电馈线进行了假设敏感性分析,对所提出的能源管理方法进行了测试。每个家庭4.54 kWh,每个工厂的光伏面板峰值输出0.38 kW。能源管理在弹性负载的相对较低容量下显示出高效的性能。在2.5%(平均每日用电量的2.5%)的灵活负载能力下,PV发电盈余将根据太阳辐照度补偿34-100%。峰值负载平均减少30%。本文还介绍了负荷转移对电网用户的配电损失和电费的影响。

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