Cyber-physical Co-simulation of Vessel Integrated Power System Based on HLA

被引:0
|
作者
Wu Y. [1 ]
Fu L. [1 ]
Ma F. [1 ]
Xiao X. [1 ]
Hao X. [1 ]
机构
[1] National Key Laboratory of Science and Technology on Vessel Integrated Power System (Naval University of Engineering), Wuhan, 430033, Hubei
来源
基金
中国国家自然科学基金;
关键词
Co-simulation; Cyber-physical system; HLA; Vessel integrated power system;
D O I
10.13335/j.1000-3673.pst.2018.2560
中图分类号
学科分类号
摘要
Aiming at close coupling between power system and information network in vessel integrated power systems, a designing of cyber-physical integrated power system co-simulation platform based on high level architecture (HLA) is proposed in this paper. In the proposed platform, simulations of information network and power system are implemented in OPNET and PSCAD respectively, and both the simulation models are extended with outside software to realize data exchange and simulation process control. Based on the runtime infrastructure interfaces provided by the HLA framework, a co-simulation controller is designed to enable OPNET and PSCAD to run simultaneously in HLA. And cyber-physical co-simulation is implemented by designing its time synchronization method and operational process. A simulation model of low voltage AC distribution network protection based on CAN bus communication is built and tested in the proposed co-simulation platform. And effectiveness of the proposed platform is validated through simulation results. © 2019, Power System Technology Press. All right reserved.
引用
收藏
页码:2422 / 2429
页数:7
相关论文
共 25 条
  • [21] ISO 11898-1. Road vehicles-controller area network (CAN)-part 1: data link layer and physical signaling, International Standard Organization, 2003
  • [22] Wu Y., Fu L., Xu Y., Et al., Controller area network modeling and its application in cyber-physical power system co-simulation, 37th Chinese Control Conference(CCC), pp. 6178-6183, (2018)
  • [23] Hao X., Ma F., Ren Q., Directional interlocking overcurrent protection of microgrids powered by inverters injected with characteristic currents, 43rd Annual Conference of the IEEE Industrial Electronics Society(IECON), pp. 220-226, (2017)
  • [24] Hassan H., Fu Q., Bharavaju V., Et al., High-speed algorithm for renewable energy based microgrid fault detection and protective coordination, 2017 IEEE Energy Conversion Congress and Exposition(ECCE), pp. 519-525, (2017)
  • [25] Saleh S.A., Signature-coordinated digital multirelay protection for microgrid systems, IEEE Transactions on Power Electronics, 29, pp. 4614-4623, (2014)