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Load-shedding strategy using a zero-sequence power supply scheme for distribution networks in a modern home or building

机译:使用零序电源方案的负荷减少策略,用于现代家庭或建筑物中的配电网络

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In this paper, a novel load-shedding technology based on the zero-sequence power supply (ZPS) principle is proposed. The principle is simple to understand, and is based on the symmetric composition method. This technology can rapidly shed loads (three-phase loads and some single-phase loads), which helps in reducing economic losses and equipment costs in the event of a shortage of electricity. The ZPS scheme is based on the selection of one of the three source lines (A-, B-, or C-phase), and then the power is fed to single-phase loads connected between any phases-to-neutral lines. In other words, three-phase and single-phase loads connected between any two-phase lines on the demand side will automatically be shed. In addition, this paper proposes a three-phase distribution transformer with a delta-connected neutral-grounded structure (ONGs). The distribution transformer with a DNGs can provide multi-voltage solutions to supply and meet a variety of loads during the normal power supply (NPS), in order to reduce the additional investment, as well as to simplify design and planning for the distribution networks of a home or building. It can also continuously supply electricity for single-phase loads between phase-to-neutral lines during the ZPS. The proposed method and obtained results are of value to system managers, engineers, and operators, especially the load shedding during power shortages in the distribution networks of a modern home or building. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于零序电源原理的新型负载分担技术。该原理易于理解,并且基于对称组成方法。该技术可以快速减少负载(三相负载和某些单相负载),这有助于在电力短缺的情况下减少经济损失和设备成本。 ZPS方案基于三个电源线(A相,B相或C相)之一的选择,然后将功率馈入连接到任何相线到中性线之间的单相负载。换句话说,连接在需求侧任意两相线之间的三相和单相负载将自动消失。此外,本文提出了一种具有三角形连接的中性点接地结构(ONGs)的三相配电变压器。带有DNG的配电变压器可提供多电压解决方案,以在正常电源(NPS)期间供电并满足各种负载,从而减少额外的投资,并简化配电网的设计和规划房屋或建筑物。在ZPS期间,它还可以为相线到中性线之间的单相负载连续供电。所提出的方法和获得的结果对系统管理员,工程师和操作员具有价值,特别是在现代住宅或建筑物的配电网络中电力短缺时减少负载。 (C)2017 Elsevier B.V.保留所有权利。

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