论文标题
基于防护的功率流控制对可再生能源整合的影响
Impacts of Variable-Impedance-Based Power Flow Control on Renewable Energy Integration
论文作者
论文摘要
在过去的二十年中,由于气候变化,电力电网在过去二十年中已经显着发展。作为这一演变的重要特征,可再生能源产生的水平提高导致了传输网络中的新拥堵模式。传输系统最初是针对传统能源设计的,具有可预测的流量模式。拥挤的传输系统的转移能力不足会导致更昂贵的发电厂和更高水平的可再生能源削减。减轻交通拥堵的一种方法是通过可变阻抗柔性交流传输系统(FACT)设备采用电源流控制。在本文中,在各种场景下,研究了电力流控制对发电成本,碳排放和可再生能源削减的影响,包括来自美国主要地区传输组织的发电组合以及代表季节性变化的不同负载曲线。两阶段的随机单位承诺(包括事实调整)用于评估事实设备对可再生能源的各种类型和穿透水平的影响。结果表明,事实安装有效地降低了发电成本,碳排放和可再生能源的削减。可再生能源资源,高峰时间需求和系统的生成组合的位置是有影响力的因素。
The electric power grid has evolved significantly over the past two decades in response to climate change. Increased levels of renewable energy generation, as a prominent feature of this evolution, have led to new congestion patterns in the transmission network. The transmission system is originally designed for conventional energy sources, with predictable flow patterns. Insufficient transfer capability in congested transmission systems results in commitment of more expensive power plants and higher levels of renewable energy curtailment. One way to mitigate congestion is adoption of power flow control through variable-impedance flexible ac transmission system (FACTS) devices. In this paper the impacts of power flow control on generation cost, carbon emissions and renewable energy curtailment are studied under a wide range of scenarios, including generation mix from major US regional transmission organizations, and different load curves, representing seasonal variations. A two-stage stochastic unit commitment, including FACTS adjustment, is used to evaluate the impacts of FACTS devices on various types and penetration levels of renewable energy. The results show that FACTS installation effectively reduces generation cost, carbon emissions, and renewable energy curtailment. Location of renewable energy resources, peak-hour demand and the system's generation mix are among the influential factors.