The utilization of wind generation equipment, such as DFIGs (double fed induction generators), interconnected to islanded power generation and distribution systems is investigated in order to determine their effects...The utilization of wind generation equipment, such as DFIGs (double fed induction generators), interconnected to islanded power generation and distribution systems is investigated in order to determine their effects on the overall system operating characteristics and stability. The use of a stable power station (with high speed machines) will be critical in achieving fast and reliable transient response to network events, in particular, when large transient loads are expected on a continuous basis, i.e., industrial mining and mineral processing equipment. Simulation results of this paper assist in understanding how small power stations and wind generation equipment respond to large transients in an islanded network. In particular, detailed simulations and analyses will be presented on impacts of distributed wind generation units (1.5 MW DF1G) on the stability of a small weak network. The novelty of this paper is on detailed analyses and simulation of weak networks with interconnects DFIG's including their impacts on system stability under various transient operating conditions.展开更多
Power generation becomes the need of developed, developing and under developed countries to meet their increasing power requirements. When affordability increases their requirement of power increases, this happens whe...Power generation becomes the need of developed, developing and under developed countries to meet their increasing power requirements. When affordability increases their requirement of power increases, this happens when increased per capita consumption. The existing power scenario states that highest power is produced using firing of coals called thermal energy. A high efficiency Switched Reluctance Generator (SRG) based high frequency switching scheme to enhance the output for grid connectivity is designed, fabricated and evaluated. This proposed method generates the output for the low wind speed. It provides output at low speed because of multi-level DC-DC converter and storage system. It is an efficient solution for low wind power generation. The real time readings and results are discussed.展开更多
我国现有风电场一般并入大电网末梢,对系统电压稳定有深刻影响。该文在分析双馈风机数学模型的基础上,通过Matlab电力系统分析软件PSAT搭建了包含双馈感应风电机组的New England 10机39节点系统,采用模态分析方法,研究了双馈感应风电机...我国现有风电场一般并入大电网末梢,对系统电压稳定有深刻影响。该文在分析双馈风机数学模型的基础上,通过Matlab电力系统分析软件PSAT搭建了包含双馈感应风电机组的New England 10机39节点系统,采用模态分析方法,研究了双馈感应风电机组在不同接入位置和不同电气距离情况下对电力系统静态电压稳定性的影响。仿真分析表明:双馈风电机组接入重负荷区域有助于提高系统的静态电压稳定性,接入薄弱区域会减弱系统的静态电压稳定性;接入电网的电气距离的增大会降低风电场及附近区域的静态电压稳定性。展开更多
文摘The utilization of wind generation equipment, such as DFIGs (double fed induction generators), interconnected to islanded power generation and distribution systems is investigated in order to determine their effects on the overall system operating characteristics and stability. The use of a stable power station (with high speed machines) will be critical in achieving fast and reliable transient response to network events, in particular, when large transient loads are expected on a continuous basis, i.e., industrial mining and mineral processing equipment. Simulation results of this paper assist in understanding how small power stations and wind generation equipment respond to large transients in an islanded network. In particular, detailed simulations and analyses will be presented on impacts of distributed wind generation units (1.5 MW DF1G) on the stability of a small weak network. The novelty of this paper is on detailed analyses and simulation of weak networks with interconnects DFIG's including their impacts on system stability under various transient operating conditions.
文摘Power generation becomes the need of developed, developing and under developed countries to meet their increasing power requirements. When affordability increases their requirement of power increases, this happens when increased per capita consumption. The existing power scenario states that highest power is produced using firing of coals called thermal energy. A high efficiency Switched Reluctance Generator (SRG) based high frequency switching scheme to enhance the output for grid connectivity is designed, fabricated and evaluated. This proposed method generates the output for the low wind speed. It provides output at low speed because of multi-level DC-DC converter and storage system. It is an efficient solution for low wind power generation. The real time readings and results are discussed.
文摘我国现有风电场一般并入大电网末梢,对系统电压稳定有深刻影响。该文在分析双馈风机数学模型的基础上,通过Matlab电力系统分析软件PSAT搭建了包含双馈感应风电机组的New England 10机39节点系统,采用模态分析方法,研究了双馈感应风电机组在不同接入位置和不同电气距离情况下对电力系统静态电压稳定性的影响。仿真分析表明:双馈风电机组接入重负荷区域有助于提高系统的静态电压稳定性,接入薄弱区域会减弱系统的静态电压稳定性;接入电网的电气距离的增大会降低风电场及附近区域的静态电压稳定性。