首页> 外文期刊>International journal of electrical power and energy systems >Power System Robust Day-ahead Scheduling with the Presence of Fast-Response Resources Both on Generation and Demand Sides under High Penetration of Wind Generation Units
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Power System Robust Day-ahead Scheduling with the Presence of Fast-Response Resources Both on Generation and Demand Sides under High Penetration of Wind Generation Units

机译:电力系统强大的一天 - 在风发单位的高渗透下的产生和需求侧面存在快速响应资源

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Increasing penetration of renewable energy resources has led to the need for operational flexibility of the power system to cover the uncertainty and variability of these resources. Therefore, employing flexible resources during the operation time will play an important role in nodal power balancing, providing the required ramping capacity, and reducing the operating costs of the power system. Some of the most important flexibility resources in the power system are fast-response resources such as gas and combined cycle units with the ability to provide non-spinning ramping capacity, bulk energy storage systems with the ability to switch from charge to discharge mode and vice versa in short-time period, and demand response programs with fast-response to price and incentive signals, which prevent the occurrence of severe ramps by correction of the system load factor. Therefore, contrary to the existing literature, this paper examines the impact of the above-mentioned fastresponse resources on the IEEE 6-bus and IEEE RTS24-bus test systems both on the generation side and the demand side in form of the proposed model for day-ahead scheduling problem under high penetration of windbased units. Another important point is the need to co-optimize energy and required ramping capacity reserve of the system with efficient accuracy and tractability. Thus, in this paper, a mixed-integer, two-stage and tri-level robust model with adaptive approach has been utilized, which is solved by nested column-and-constraint generation decomposition-based algorithm in order to jointly clear the energy and ramping capacity reserve with the presence of fast-response resources. The results show that utilizing the potential of fast-response resources with the aim of providing operational flexibility reduces operating costs by up to 10.61%.
机译:增加可再生能源资源的渗透导致电力系统的操作灵活性,以涵盖这些资源的不确定性和可变性。因此,在操作时间内采用灵活的资源将在节点电力平衡中发挥重要作用,提供所需的斜坡容量,并降低电力系统的运行成本。电力系统中的一些最重要的灵活性资源是诸如气体和组合循环单元的快速响应资源,具有提供非旋转斜坡容量的能力,散装能量存储系统能够从充电切换到放电模式和副在短时间内,在短时间内,并要求响应响应价格和激励信号的响应计划,这防止了通过系统负载因子的校正发生严重斜坡的发生。因此,与现有文献相反,本文介绍了上述Fastresponse资源对IEEE 6公交车和IEEE RTS24-BUS测试系统的影响,两者都是所提出的模型的形式的生成侧和需求侧 - 在温碎机单位高渗透下的安排调度问题。另一个重要点是有必要共同优化能量和所需的系统斜坡容量储备,具有有效的准确性和易遗传性。因此,在本文中,已经利用了具有自适应方法的混合整数,两阶段和三级鲁棒模型,其通过嵌套列和约束生成分解的算法来解决,以便共同清除能量和随着快速响应资源的存在,容量储备升高。结果表明,利用快速响应资源的潜力,目的是提供运营灵活性降低运营成本高达10.61%。

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