FPGA-based real-time simulation of LCC-HVDC systems with C-NAM method

被引:0
作者
Ruolan Li
Danyong Li
Yang Gao
Chen Gu
Xiaoyi Sun
Li Fan
机构
[1] Beijing Jiaotong University,Department of Electronic Information Engineering
[2] State Grid Smart Grid Research Institute Co.,State Key Laboratory of Advanced Transmission Technology
[3] Ltd.,undefined
[4] State Grid Jiangsu Electric Power Co.,undefined
[5] Ltd.,undefined
来源
Journal of Power Electronics | 2023年 / 23卷
关键词
LCC-HVDC; Real-time simulation; FPGA; Compact nodal analysis method; Matrix multiplication;
D O I
暂无
中图分类号
学科分类号
摘要
The real-time simulation of a line-commutated converter-high voltage direct current (LCC-HVDC) system based on a field programmable gate array (FPGA) is proposed to meet the increasingly complex dynamic characteristics and real-time simulation requirements of HVDCs. In addition, a real-time simulation platform based on a CPU + FPGA is established for simulation verification. First, a simulation model of the 12-pulse rectifier of an LCC-HVDC is established using the compact nodal analysis method (C-NAM). When compared with the traditional node analysis method, C-NAM reduces the number of multiplication executions in a single simulation step, and the degree of program serialization is significantly reduced, which greatly improves the real-time simulation speed of a FPGA. Then, this simulation model is programmed in a FPGA, and the optimization algorithm further shortens the simulation step size. Finally, a 12-pulse LCC-HVDC is compared and verified with a 1 µs simulation step on a FPGA real-time simulation platform, and a simulation analysis verifies the accuracy of the model. This method can improve the simulation scale of an LCC-HVDC system, and enhance the versatility of the LCC-HVDC real-time simulator based on a FPGA.
引用
收藏
页码:913 / 922
页数:9
相关论文
共 62 条
[11]  
Qi S(2020)Controller-embeddable probabilistic real-time digital twins for power electronic converter diagnostics IEEE Trans. Power Electron. 35 9850-1202
[12]  
Yan D(2016)Detailed magnetic equivalent circuit based real-time nonlinear power transformer model on FPGA for electromagnetic transient studies IEEE Trans. Ind. Electron. 63 1191-921
[13]  
Zhang Y(2018)A system-level FPGA-based hardware-in-the-loop test of high-speed train IEEE Trans. Transp. Electrif. 4 912-840
[14]  
Ding H(2011)Massively parallel implementation of AC machine models for FPGA-based real-time simulation of electromagnetic transients IEEE Trans. Power Deliv. 26 830-1190
[15]  
Kuffel R(2016)ADC-based embedded real-time simulator of a power converter implemented in a low-cost FPGA: application to a fault-tolerant control of a grid-connected voltage-source rectifier IEEE Trans. Ind. Electron. 63 1179-902
[16]  
Guillaud X(2009)FPGA-based real-time EMTP IEEE Trans. Power Deliv. 24 892-6168
[17]  
Faruque MO(2016)Real-time device-level transient electrothermal model for modular multilevel converter on FPGA IEEE Trans. Power Electron. 31 6155-1873
[18]  
Teninge A(2019)Stabilization of hardware-in-the-loop ideal transformer model interfacing algorithm by using spectrum assignment IEEE Trans. Power Deliv. 34 1865-3069
[19]  
Vijay AS(2018)Generalised extended- frequency dynamic phasor model of LCC-HVDC systems for electromagnetic transient simulations IET Gener. 12 3061-397
[20]  
Doolla S(2018)A node splitting interface algorithm for multi-rate parallel simulation of DC grids CSEE J. Power Energy Syst. 4 388-3841