采用模板和PSS/E复合荷载模型结构cld对工业设施进行动态荷载建模

Shengqiang Li, Xiaodong Liang, Wilsun Xu
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引用次数: 11

摘要

工业设施负荷对电力系统的稳定性有着重要的影响。由于其功率需求大,对系统动态性能的影响复杂,因此对其进行适当的建模至关重要。由于对行业特定负载组成数据的了解有限,因此当前公用事业实践的负载模型准确性大大降低。本文将特定类型工业设施的模板与商业软件PSS/E中的复合负荷模型结构(CLOD)相结合,提出了一种新的动态负荷建模方法。该方法在PSS/E中相对容易实现,仍然可以达到合理的精度。建议的方法包括三个步骤:1)通过对特定类型的工业设施进行深入的负荷调查来创建模板;2)利用模板确定PSS/E CLOD荷载模型结构所需的设施荷载组成;3)利用负荷组成数据建立设施的PSS/E CLOD负荷模型。为了验证所提出的方法,使用一个实际的110兆瓦(MW)卡夫造纸厂设备进行了案例研究和敏感性研究。通过将仿真结果与110 MW牛皮造纸厂现场实测结果进行对比,验证了所建模型的准确性;灵敏度研究表明,所提出的建模方法在载荷参数变化时具有较好的鲁棒性。该方法可作为任何类型工业设施动态负荷建模的通用方法。
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Dynamic load modeling for industrial facilities using template and PSS/E composite load model structure CLOD
Industrial facility loads have significant impact on power system stability. Due to their large power demand and complicated impact on system dynamic performance, it is critical to model them properly. Because the knowledge of industry-specific load composition data are limited, load model accuracy of the current utility practice is greatly compromised. In this paper, a new dynamic load modeling method is proposed by combining a template of a specific type of industrial facilities and the composite load model structure (CLOD) in the commercial software PSS/E. This method is relatively easier to implement in PSS/E and can still achieve reasonable accuracy. The proposed method consists of three steps: 1) create a template by conducting an in-depth load survey for a specific type of industrial facilities; 2) determine load composition of the facility that is required by PSS/E CLOD load model structure using the template; 3) create a PSS/E CLOD load model of the facility using the load composition data. To validate the proposed method, a case study and a sensitivity study are conducted using a real 110-megawatt (MW) Kraft paper mill facility. The case study verifies the accuracy of the proposed model by comparing simulation results with actual field measurements of the 110 MW Kraft paper mill facility; the sensitivity study shows the robustness of the proposed modeling method when subjected to load parameters variation. The proposed method can serve as a generic method for dynamic load modeling of any type of industrial facilities.
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