分散式电网自动化系统可靠性及其对配电网可靠性的影响

K. Kamps, F. Möhrke, M. Zdrallek, P. Awater, M. Schwan
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引用次数: 1

摘要

由于分布式发电的增长和消费行为的变化(例如由电动汽车引起的),对中低压网络中经济可靠的智能电网技术的需求增加。分布式电网自动化系统是一种依托于综合信息通信技术的智能电网技术。这可以实时监控网络状态,并在关键情况下对主动网络参与者(例如分布式发电机)进行后续控制。在进行投资决策时,对该系统的可靠性进行评估,并评估其对配电网可靠性的影响是至关重要的。为了能够对这些系统的可靠性进行评估,通过信息和通信技术的规范加强了可靠性分析。在这个贡献中,最小割集的解析方法被用于这个目的。最后,确定了分散网络自动化系统的三状态马尔可夫模型的状态概率和转移率。此外,分散式电网自动化系统的功能增强了电力系统的可靠性计算。这包括断电、故障检测、故障隔离和恢复技术。本文以一个典型的中压电网为例,对这些改进对面向用户和分布式发电机的可靠性指标的影响进行了说明和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability of Decentralized Network Automation Systems and Impacts on Distribution Network Reliability
Due to the growth of distributed generation and the changes of consumption behavior (e. g. induced by electromobility), the need for cost-efficient and reliable smart grid technologies in medium and low-voltage networks increases. A decentralized network automation system is a smart grid technology that relies on comprehensive information and communication technologies. This enables the monitoring of a network state in real time and the subsequent control of active network participants (e. g. distributed generators) in critical situations. When making an investment decision, it is crucial to assess the reliability of this system and to evaluate the impact on distribution network reliability. In order to be able to assess the reliability of these systems, the reliability analysis is enhanced by the specifications of information and communication technologies. In this contribution, the analytical method of minimal cut sets is used for this purpose. As a result, the state probabilities and transition rates of the presented three-state Markov model for decentralized network automation systems are determined. Moreover, the reliability calculation of an electrical power system is enhanced by the functionalities of a decentralized network automation system. This includes power curtailment, fault detection, fault isolation and recovery techniques. The resulting impacts of these enhancements on customer- and distributed-generator-oriented reliability indices are illustrated and discussed for an exemplary medium-voltage network.
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