为研究柔性直流输电方式对并网双馈风力发电系统的无功功率支撑作用,在分析双馈风力发电并网系统、模块化多电平换流器(modular multilevel converter,MMC)高压直流输电系统工作原理的基础上,在实时数字仿真(real time digital simulato...为研究柔性直流输电方式对并网双馈风力发电系统的无功功率支撑作用,在分析双馈风力发电并网系统、模块化多电平换流器(modular multilevel converter,MMC)高压直流输电系统工作原理的基础上,在实时数字仿真(real time digital simulator,RTDS)平台上进行系统建模研究,其中MMC-HVDC系统的整流侧换流站采取定有功和无功功率控制,逆变侧采用定直流电压控制。基于MMC-HVDC的并网双馈风力发电系统模型,研究交流电网处发生故障时,由风电系统内部"背靠背"换流器与MMC-HVDC系统两端换流器的协调交互控制维持直流电压的稳定,满足风电系统无功功率的需求。结果表明换流站间的协调控制策略较好地补偿风电系统的无功功率,同时验证了双端换流站所采取控制策略的有效性。展开更多
回顾了上世纪70年代参编GBJ 52-83《工业与民用供电系统设计规范》的编制情况。指出因历史条件的不同,诸如负荷分级、35 k V配电、有载调压变压器装用以及接地系统等的规定在有关规范编制中宜根据现时情况予以删改或补充,使规范内容更...回顾了上世纪70年代参编GBJ 52-83《工业与民用供电系统设计规范》的编制情况。指出因历史条件的不同,诸如负荷分级、35 k V配电、有载调压变压器装用以及接地系统等的规定在有关规范编制中宜根据现时情况予以删改或补充,使规范内容更适应时代前进的步伐。展开更多
This paper introduces in detail the reactive power compensation technology and its characteristics, to reduce the loss of reactive power compensation technology 1N power distribution system and the electrical automati...This paper introduces in detail the reactive power compensation technology and its characteristics, to reduce the loss of reactive power compensation technology 1N power distribution system and the electrical automation, improve the utilization rate, and realize the control of the voltage amplitude in the system network, voltage stability of power distribution system, has carried on the system analysis to reduce failure of the harmonic current to the power supply system and other functions. And the paper in-depth study on the application of reactive power compensation technology in electrical automation from the reactive compensation technology, substation and distribution line reactive power compensation, power users of reactive power compensation and other aspects.展开更多
This paper presents a potential solution of power flow constraints of BPS (Bangladesh power system) using VAR (volt ampere reactive) compensation. VAR compensation is defined as the management of reactive power to...This paper presents a potential solution of power flow constraints of BPS (Bangladesh power system) using VAR (volt ampere reactive) compensation. VAR compensation is defined as the management of reactive power to improve the performance ofac power systems. The concept of VAR compensation embraces a wide and diverse field of both system and customer problems, especially related with power quality issues, since most of power quality problems can be attenuated or solved with an adequate control of reactive power. VAR compensation in transmission systems also improves the stability of the ac system by increasing the maximum active power that can be transmitted. It also helps to maintain a substantially fiat voltage profile at all levels of power transmission. BPS is currently facing problems in few 132 grid points where the thermal limits of transmission are often exceeded. BPS is also foreseeing problem in transmitting additional power from the new generating units in Sylhet to Dhaka zone. This paper investigates the potential solution to these transmission problems.展开更多
There is a danger of power generation efficiency decreasing due to voltage increase when clustered residential PV systems are grid-interconnected to a single distribution line. As a countermeasure, installation of the...There is a danger of power generation efficiency decreasing due to voltage increase when clustered residential PV systems are grid-interconnected to a single distribution line. As a countermeasure, installation of the reactive power control of an inverter at each residence has been considered. However, there are not many types of inverters that can operate reactive power control because there are insufficient effects on a low voltage distribution line with low penetration PV with reactive power control. Therefore, it is necessary to consider how to increase generation efficiency with a lower number of inverters. In this paper, four Japanese standard distribution line structures, for example of a residential area on "C1", where 2,160 residential PV systems are grid-interconnected, are selected. The optimal setting of reactive power control at each residence is computed on the distribution lines with a greedy method.展开更多
文摘为研究柔性直流输电方式对并网双馈风力发电系统的无功功率支撑作用,在分析双馈风力发电并网系统、模块化多电平换流器(modular multilevel converter,MMC)高压直流输电系统工作原理的基础上,在实时数字仿真(real time digital simulator,RTDS)平台上进行系统建模研究,其中MMC-HVDC系统的整流侧换流站采取定有功和无功功率控制,逆变侧采用定直流电压控制。基于MMC-HVDC的并网双馈风力发电系统模型,研究交流电网处发生故障时,由风电系统内部"背靠背"换流器与MMC-HVDC系统两端换流器的协调交互控制维持直流电压的稳定,满足风电系统无功功率的需求。结果表明换流站间的协调控制策略较好地补偿风电系统的无功功率,同时验证了双端换流站所采取控制策略的有效性。
文摘This paper introduces in detail the reactive power compensation technology and its characteristics, to reduce the loss of reactive power compensation technology 1N power distribution system and the electrical automation, improve the utilization rate, and realize the control of the voltage amplitude in the system network, voltage stability of power distribution system, has carried on the system analysis to reduce failure of the harmonic current to the power supply system and other functions. And the paper in-depth study on the application of reactive power compensation technology in electrical automation from the reactive compensation technology, substation and distribution line reactive power compensation, power users of reactive power compensation and other aspects.
文摘This paper presents a potential solution of power flow constraints of BPS (Bangladesh power system) using VAR (volt ampere reactive) compensation. VAR compensation is defined as the management of reactive power to improve the performance ofac power systems. The concept of VAR compensation embraces a wide and diverse field of both system and customer problems, especially related with power quality issues, since most of power quality problems can be attenuated or solved with an adequate control of reactive power. VAR compensation in transmission systems also improves the stability of the ac system by increasing the maximum active power that can be transmitted. It also helps to maintain a substantially fiat voltage profile at all levels of power transmission. BPS is currently facing problems in few 132 grid points where the thermal limits of transmission are often exceeded. BPS is also foreseeing problem in transmitting additional power from the new generating units in Sylhet to Dhaka zone. This paper investigates the potential solution to these transmission problems.
文摘There is a danger of power generation efficiency decreasing due to voltage increase when clustered residential PV systems are grid-interconnected to a single distribution line. As a countermeasure, installation of the reactive power control of an inverter at each residence has been considered. However, there are not many types of inverters that can operate reactive power control because there are insufficient effects on a low voltage distribution line with low penetration PV with reactive power control. Therefore, it is necessary to consider how to increase generation efficiency with a lower number of inverters. In this paper, four Japanese standard distribution line structures, for example of a residential area on "C1", where 2,160 residential PV systems are grid-interconnected, are selected. The optimal setting of reactive power control at each residence is computed on the distribution lines with a greedy method.