随着分布式发电装置和电力电子设备在低压配电系统的广泛应用,采用直流供电方式的低压系统又显现出优越性,并引起学者的关注。迄今为止,学者们对低压直流系统的系统结构、负荷的兼容性、负荷模型、电能质量与可靠性、保护和控制、节能...随着分布式发电装置和电力电子设备在低压配电系统的广泛应用,采用直流供电方式的低压系统又显现出优越性,并引起学者的关注。迄今为止,学者们对低压直流系统的系统结构、负荷的兼容性、负荷模型、电能质量与可靠性、保护和控制、节能型评估等方面进行的初步研究表明:低压直流供电系统可以兼容目前大部分的低压负荷,可以对暂态过程进行有效的控制,并提高供电的连续性;特别是在具有分布式发电装置(如太阳能电池、风力发电、燃料电池)的低压系统中,低压直流(low voltage direct current,LVDC)供电系统在降低系统电能损耗、增强供电连续性和可靠性、提高电能质量方面,与交流系统相比,具有优越性,并且系统结构得以简化。同时,该文提出并讨论了低压直流系统需要进一步研究的问题。展开更多
Digital twin(DT)framework is introduced in the context of application for power grid online analysis.In the development process of a new power grid real-time online analysis system,an online analysis digital twin(OADT...Digital twin(DT)framework is introduced in the context of application for power grid online analysis.In the development process of a new power grid real-time online analysis system,an online analysis digital twin(OADT)has been implemented to realize the new online analysis architecture.The OADT approach is presented and its prominent features are discussed.The presentation,discussion,and performance testing are based on a large-scale grid network model(40K+buses),exported directly from the EMS system of an actual power grid.A plan to apply the OADT approach to digitize power grid dispatching rules is also outlined.展开更多
文摘随着分布式发电装置和电力电子设备在低压配电系统的广泛应用,采用直流供电方式的低压系统又显现出优越性,并引起学者的关注。迄今为止,学者们对低压直流系统的系统结构、负荷的兼容性、负荷模型、电能质量与可靠性、保护和控制、节能型评估等方面进行的初步研究表明:低压直流供电系统可以兼容目前大部分的低压负荷,可以对暂态过程进行有效的控制,并提高供电的连续性;特别是在具有分布式发电装置(如太阳能电池、风力发电、燃料电池)的低压系统中,低压直流(low voltage direct current,LVDC)供电系统在降低系统电能损耗、增强供电连续性和可靠性、提高电能质量方面,与交流系统相比,具有优越性,并且系统结构得以简化。同时,该文提出并讨论了低压直流系统需要进一步研究的问题。
基金This work was supported by National Natural Science Foundation of China under the Grant U1766214.
文摘Digital twin(DT)framework is introduced in the context of application for power grid online analysis.In the development process of a new power grid real-time online analysis system,an online analysis digital twin(OADT)has been implemented to realize the new online analysis architecture.The OADT approach is presented and its prominent features are discussed.The presentation,discussion,and performance testing are based on a large-scale grid network model(40K+buses),exported directly from the EMS system of an actual power grid.A plan to apply the OADT approach to digitize power grid dispatching rules is also outlined.