Design Idea and Development Path of Simulation Application Software for New Power System

被引:0
|
作者
Shen C. [1 ,2 ]
Chen Y. [1 ,2 ]
Huang S. [1 ,2 ]
Yu Z. [2 ,3 ]
Song Y. [2 ,3 ]
Gao S. [1 ]
机构
[1] Department of Electrical Engineering, Tsinghua University, Beijing
[2] Sichuan Energy Internet Research Institute, Tsinghua University, Chengdu
[3] Qingluan Technology (Chengdu) Co., Ltd., Chengdu
关键词
Digitalization transformation; New power system; Power system modeling; Power system simulation;
D O I
10.7500/AEPS20220426002
中图分类号
学科分类号
摘要
This paper summarizes the challenges to the simulation of the new power system, brought about by the characteristics of high penetration of new energy generation and high penetration of power electronic equipment, and proposes the design concepts for the power system simulation software development, i.e., the six aspects of the complete models, accurate modeling, efficient computation, comprehensive scenarios, open interface, and flexible services. Then, based on the awareness that simulation is just an approach rather than the purpose for understanding and reforming the new power system, and that the simulation should adapt to the digital transformation needs of power enterprises in the background of the new power system, it is pointed out that the function orientation of China's independent power system simulation software should be transitioned from simple simulation tool to power system simulation software development platform and operation environment, and a development path is proposed that helps users automate their business procedures, facilitate their platform use and ecologize the application development. Finally, the guiding roles of the above design concepts and development path are illustrated by the introduction of the developed simulation software development platform and operating environment for the new power system, i.e., CloudPSS. © 2022 Automation of Electric Power Systems Press.
引用
收藏
页码:75 / 86
页数:11
相关论文
共 23 条
  • [1] SHU Yinbiao, CHEN Guoping, HE Jingbo, Et al., Building a new electric power system based on new energy sources, Strategic Study of CAE, 23, 6, pp. 61-69, (2021)
  • [2] CHEN Ying, GAO Shilin, SONG Yankan, Et al., High-performance electromagnetic transient simulation for new-type power system based on cloud computing, Proceedings of the CSEE, 42, 8, pp. 2854-2863, (2022)
  • [3] KUNDUR P., Power system stability and control, (1994)
  • [4] ZHANG Yuechi, LIU Benxi, LUO Bin, Et al., PSD-BPA based automatic integration and adjustment method of power grid operation plan data, Automation of Electric Power Systems, 41, 1, pp. 102-108, (2017)
  • [5] XU Decao, HAN Minxiao, DING Hui, Et al., Modeling of HVDC based on the user-defined model of PSASP, Automation of Electric Power Systems, 31, 6, pp. 71-76, (2007)
  • [6] GOLE A M, NAYAK O B, SIDHU T S, Et al., A graphical electromagnetic simulation laboratory for power systems engineering programs, IEEE Transactions on Power Systems, 11, 2, pp. 599-606, (1996)
  • [7] LI Shan, Simulation of 750 kV unloaded transformer excitation surge based on software EMTPE, High Voltage Apparatus, 49, 1, pp. 101-106, (2013)
  • [8] PHATANAPHEROM S, UTHAYOPAS P, KACHITVICHYANUKUL V., Fast simulation model for grid scheduling using HyperSim, Proceedings of the 35th Conference on Winter Simulation: Driving Innovation, pp. 1494-1500, (2003)
  • [9] KUFFEL R, GIESBRECHT J, MAGUIRE T, Et al., RTDS-a fully digital power system simulator operating in real time, 1995 International Conference on Energy Management and Power Delivery EMPD '95, pp. 498-503, (1995)
  • [10] TIAN Fang, LI Yalou, ZHOU Xiaoxin, Et al., Advanced digital power system simulator, Power System Technology, 32, 22, pp. 17-22, (2008)