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首页> 外文期刊>Electric power systems research >Developing A Smart Power-Voltage Relay (SPV-Relay) with no Communication System for DC Microgrids
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Developing A Smart Power-Voltage Relay (SPV-Relay) with no Communication System for DC Microgrids

机译:开发智能电压继电器(SPV继电器),没有用于DC Microgrids的通信系统

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摘要

Microgrids are considered a prospective way towards improving electric service resiliency, reducing costs, and upgrading service reliability. DC microgrids offer many advantages rather than AC microgrids. In spite of the numerous features and advantages of DC microgrids, their protection faces significant challenges such as self-limited current of photovoltaic (PV) systems, long time constant of wind energy systems, dependability on communication systems, etc. The paper introduces a new protection scheme for DC microgrids using the rate of power (dP) and rate of voltage (dV) and mapping them as dP-dV profile. The new scheme is titled as smart power/voltage relay (SPV-Relay). The proposed scheme is applicable for all types of renewable energy sources (RESs) and energy storage systems independent of the power rating and configuration of the DC microgrid. The proposed concept of SPV-Relay is described and the method used for fault discrimination is explained. The relay characteristics are developed considering all the DC microgrid components. Three operating zones are identified on dP-dV profile to discriminate between various fault types and locations. The sensitivity and stability of the proposed relay are evaluated under different fault conditions as well as different control schemes and operational scenarios for DC microgrid.
机译:微电网被认为是提高电力服务弹性,降低成本和升级服务可靠性的前瞻性途径。 DC Microgrids提供了许多优点而不是AC微电网。尽管DC微普林的许多特征和优点,但它们的保护面临着显着的挑战,例如光伏(PV)系统的自限流,风能系统长时间常数,通信系统的可靠性等。本文介绍了一种新的使用功率速率(DP)和电压速率(DV)和电压率(DV)的保护方案并将其映射为DP-DV轮廓。新方案标题为智能电源/电压继电器(SPV继电器)。该方案适用于所有类型的可再生能源(RESS)和能量存储系统,独立于DC微电网的功率额定值和配置。描述了SPV继电器的所提出的概念,并解释了用于故障辨别的方法。考虑所有DC微电网组件,开发了继电器特性。在DP-DV配置文件上识别了三个操作区以区分各种故障类型和位置。在不同的故障条件下评估所提交的灵敏度和稳定性以及DC微电网的不同控制方案和操作场景。

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