验证可再生能源项目的静态VAr系统模型是否符合电网规范

Xiaokang Xu, M. Bishop, Donna G. Oikarinen, Owen Lock
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引用次数: 1

摘要

电力系统动态模型是暂态稳定仿真的基础,而暂态稳定仿真通常是输电规划研究的一部分。准确的动态仿真对输电系统的安全可靠运行至关重要,而电力系统稳定性分析的精度取决于系统设备模型的准确性。因此,电力系统动力学模型的验证对于产生正确的仿真结果至关重要。为了验证动态模型的质量,动态模拟与现场测量的比较是必要的。针对某输电系统的实际应用,给出了静态无功系统(SVS)模型的现场验证过程。正在考虑的SVS包括STATCOM (FACTS设备)和协调的机械开关分流元件。该SVS是为符合电网规范的可再生项目设计和安装的。首先对该模型的控制参数进行估计,然后根据实际设备的控制参数进行调整,使仿真结果符合传动系统的现场测量结果。模型模拟结果与现场实测结果的比较表明,验证模型产生的响应与现场试验结果非常接近。SVS模型验证并提交给输电系统运营商是电网规范的要求。经过验证的SVS模型已成功地用于几项输电规划研究,对于这些类型的研究是适当和准确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Validation of a static VAr system model for a renewable project for grid code compliance
Power system dynamic models are the foundation for transient stability simulations which are usually part of transmission planning studies. Accurate dynamic simulations are crucial for reliable and secure operation of a transmission system and the precision of power system stability analysis depends on the accuracy of the models used to represent system equipment. Therefore, the validation of power system dynamic models is critical for producing correct simulation results. Comparison of dynamic simulations with field measurements is necessary to validate the quality of a dynamic model. This paper presents the validation process for a Static VAr System (SVS) model with field measurements for a transmission system application. The SVS under consideration includes a STATCOM (a FACTS device) and coordinated mechanically switched shunt elements. This SVS was designed and installed for a renewable project for grid code compliance. The control parameters of this model were first estimated and then tuned based on the actual equipment control parameters to fit simulations to field measurements from the transmission system. Comparison of the model simulation results with the field measurements shows that the validated model generates responses very close to the field test results. The SVS model validation and submission to the transmission system operator is a requirement of the grid code. The validated SVS model has been successfully used for several transmission planning studies and is appropriate and accurate for these types of studies.
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