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A review on economic and technical operation of active distribution systems

机译:主动配电系统的经济和技术运行回顾

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Along with the advent of restructuring in power systems, considerable integration of renewable energy resources has motivated the transition of traditional distribution networks (DNs) toward new active ones. In the meanwhile, rapid technology advances have provided great potentials for future bulk utilization of generation units as well as the energy storage (ES) systems in the distribution section. This paper aims to present a comprehensive review of recent advancements in the operation of active distribution systems (ADSs) from the viewpoint of operational time-hierarchy. To be more specific, this time-hierarchy consists of two stages, and at the first stage of this time-hierarchy, four major economic factors, by which the operation of traditional passive DNs is evolved to new active DNs, are described. Then the second stage of the time-hierarchy refers to technical management and power quality correction of ADSs in terms of static, dynamic and transient periods. In the end, some required modeling and control developments for the optimal operation of ADSs are discussed. As opposed to previous review papers, potential applications of devices in the ADS are investigated considering their operational time intervals. Since some of the compensating devices, storage units and generating sources may have different applications regarding the time scale of their utilization, this paper considers real scenario system operations in which components of the network are firstly scheduled for the specified period ahead; then their deviations of operating status from reference points are modified during three time-intervals covering static, dynamic and transient periods.
机译:随着电力系统重组的到来,可再生能源的大量整合促使了传统配电网络(DNs)向新的有源配电网络的过渡。同时,快速的技术进步为将来的发电设备以及配电部分的储能(ES)系统的大量利用提供了巨大的潜力。本文旨在从操作时间层次结构的角度全面回顾有源配电系统(ADS)的最新操作。更具体地说,此时间层次结构包括两个阶段,并且在此时间层次结构的第一阶段,描述了四个主要的经济因素,通过这些经济因素,传统的被动DN逐渐演变为新的主动DN。然后,时间分层结构的第二阶段涉及ADS的技术管理和电能质量校正,包括静态,动态和瞬态周期。最后,讨论了ADS最佳运行所需的一些建模和控制开发。与以前的评论文章不同,考虑了其工作时间间隔,研究了ADS中设备的潜在应用。由于某些补偿设备,存储单元和发电源在其使用的时间范围方面可能具有不同的应用,因此本文考虑了实际方案系统的运行,在这种情况下,首先在预定的指定时期内安排了网络的组件;然后在覆盖静态,动态和瞬态周期的三个时间间隔内修改它们与参考点的运行状态偏差。

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