电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2014年
4期
127-135
,共9页
李亚楼%穆清%安宁%胡晓波
李亞樓%穆清%安寧%鬍曉波
리아루%목청%안저%호효파
直流电网%建模%仿真%等效模型%控制系统%潮流计算%小步长仿真%并行计算%多速率混合仿真
直流電網%建模%倣真%等效模型%控製繫統%潮流計算%小步長倣真%併行計算%多速率混閤倣真
직류전망%건모%방진%등효모형%공제계통%조류계산%소보장방진%병행계산%다속솔혼합방진
direct current grids%modeling%simulation%equivalent model%control system%power flow calculation%small time-step simulation%parallel calculation%multi-rate hybrid simulation
直流电网具有接入灵活、控制灵活、经济性好等优势,受到了工程和学术界的关注,而传统的电力系统建模仿真技术已经不能完全适应直流电网的研究和应用的需要。文中介绍了直流电网建模仿真的最新发展,总结了适用于直流电网的设备模型和仿真方法,提出了建模和仿真技术的挑战。在建模技术方面,总结了AC/DC 换流器模型、DC/DC 换流器模型、直流开关模型、直流负载模型和直流电网的系统控制模型和实现方法。在仿真技术方面,阐述了直流电网潮流算法的实施方案和挑战;总结了直流电网电磁暂态算法在精确性和效率上的挑战,提出了解决方案;阐述了高效的并行算法和多速率混合仿真的挑战和实现方法;展望了物理仿真技术和数模混合仿真在直流电网的应用和未来发展。
直流電網具有接入靈活、控製靈活、經濟性好等優勢,受到瞭工程和學術界的關註,而傳統的電力繫統建模倣真技術已經不能完全適應直流電網的研究和應用的需要。文中介紹瞭直流電網建模倣真的最新髮展,總結瞭適用于直流電網的設備模型和倣真方法,提齣瞭建模和倣真技術的挑戰。在建模技術方麵,總結瞭AC/DC 換流器模型、DC/DC 換流器模型、直流開關模型、直流負載模型和直流電網的繫統控製模型和實現方法。在倣真技術方麵,闡述瞭直流電網潮流算法的實施方案和挑戰;總結瞭直流電網電磁暫態算法在精確性和效率上的挑戰,提齣瞭解決方案;闡述瞭高效的併行算法和多速率混閤倣真的挑戰和實現方法;展望瞭物理倣真技術和數模混閤倣真在直流電網的應用和未來髮展。
직류전망구유접입령활、공제령활、경제성호등우세,수도료공정화학술계적관주,이전통적전력계통건모방진기술이경불능완전괄응직류전망적연구화응용적수요。문중개소료직류전망건모방진적최신발전,총결료괄용우직류전망적설비모형화방진방법,제출료건모화방진기술적도전。재건모기술방면,총결료AC/DC 환류기모형、DC/DC 환류기모형、직류개관모형、직류부재모형화직류전망적계통공제모형화실현방법。재방진기술방면,천술료직류전망조류산법적실시방안화도전;총결료직류전망전자잠태산법재정학성화효솔상적도전,제출료해결방안;천술료고효적병행산법화다속솔혼합방진적도전화실현방법;전망료물리방진기술화수모혼합방진재직류전망적응용화미래발전。
Marked with flexible interconnection,flexible control and economy,the direct current (DC) grid has captured the attention of industry and academy while the traditional modeling and simulation technology is hardly able to completely satisfy the needs of DC grids.This paper studies the development of DC grids modeling and simulation,summaries the modeling and simulation technology of DC grids,and proposes challenges to enhance modeling and simulation.In the field of modeling,AC/DC converter model,DC/DC converter model,DC switch model,DC load model,and system control model and implementing method of DC power grid is suggested.In the field of simulation,the power flow on the application and challenge is illustrated, while the drawback of inadequate precision and efficiency of the electro-magnetic simulation algorithm is summarized. Moreover,the real-time simulation,the highly efficient parallel technology and multi-rate technology are treated.The trend of analog and digital hybrid simulation is discussed,and its prospects for future application in DC grids are given.