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Operational reliability evaluation of restructured power systems with wind power penetration utilizing reliability network equivalent and time-sequential simulation approaches

机译:利用等效可靠度网络和时序仿真方法评估具有风电穿透力的重组电力系统的运行可靠性

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In the last two decades, the wind power generation has been rapidly and widely developed in many regions and countries for tackling the problems of environmental pollution and sustainability of energy supply. However, the high share of intermittent and fluctuating wind power production has also increased the burden of system operator for securing power system reliability during the operational phase. Moreover, the power system restructuring and deregulation have not only introduced the competition for reducing cost but also changed the strategy of reliability evaluation and management of power systems. The conventional long-term reliability evaluation techniques have been well developed, which have been more focused on planning and expansion rather than operation of power systems. This paper proposes a new technique for evaluating operational reliabilities of restructured power systems with high wind power penetration. The proposed technique is based on the combination of the reliability network equivalent and time-sequential simulation approaches. The operational reliability network equivalents are developed to represent reliability models of wind farms, conventional generation and reserve provides, fast reserve providers and transmission network in restructured power systems. A contingency management schema for real time operation considering its coupling with the dayahead market is proposed. The time-sequential Monte Carlo simulation is used to model the chronological characteristics of corresponding reliability network equivalents. Asimplified method is also developed in the simulation procedures for improving the computational efficiency. The proposed technique can be used to evaluate customers' reliabilities considering high penetration of wind power during the power system operation in the deregulated environment.
机译:在过去的二十年中,风力发电在许多地区和国家中得到了迅速和广泛的发展,以解决环境污染和能源供应的可持续性问题。然而,间歇性和波动性风力发电的高份额也增加了系统操作员在操作阶段确保电力系统可靠性的负担。此外,电力系统的重组和放松管制不仅带来了降低成本的竞争,而且改变了电力系统的可靠性评估和管理策略。常规的长期可靠性评估技术已经得到了很好的发展,其更加侧重于计划和扩展而不是电力系统的运行。本文提出了一种新技术,用于评估具有高风电渗透率的重组电力系统的运行可靠性。所提出的技术是基于可靠性网络等效和时序仿真方法的结合。开发了等效的运行可靠性网络,以表示风电场,常规发电和备用电源,快速备用提供方以及重组后的电力系统中的传输网络的可靠性模型。提出了一种考虑与日前市场相结合的实时操作应急管理方案。时间序列蒙特卡洛模拟用于对相应可靠性网络等效项的时间特征进行建模。在仿真过程中还开发了简化方法以提高计算效率。考虑到在解除管制的环境中电力系统运行期间考虑到风电的高渗透性,提出的技术可用于评估客户的可靠性。

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