To minimize the reactive power of the converter of the control winding in the novel dual stator-winding induction generator based on the PWM converter, design features of the induction generator with a rectified load ...To minimize the reactive power of the converter of the control winding in the novel dual stator-winding induction generator based on the PWM converter, design features of the induction generator with a rectified load are proposed. The optimization method of excited capacitors to minimize the reactive power of the control winding at a variable speed is given. The calculation capacity of the machine with a diode bridge rectifier load is proposed. To achieve global searching, the integrated method with the improved real-coded genetic algorithm and the twodimensional finite element method (FEM) is introduced. Design results of the sample show that reactive power can be reduced by the method, and the converter capacity can be decreased to 1/3 of output rated power at the speed ratio of 1 : 3, thus reducing the volume and the mass of the inverter.展开更多
Based on analysis and calculation of the relation between current harmonics and MMF harmonics in the dual-stator winding multi-phase high-speed induction gen-erator with a rectifier load, a new idea, which divides the...Based on analysis and calculation of the relation between current harmonics and MMF harmonics in the dual-stator winding multi-phase high-speed induction gen-erator with a rectifier load, a new idea, which divides the generator system into two sub-systems to be analyzed individually, is presented. For the sub-system of the 12-phase power winding with a rectifier load, the loop current method is used to establish network equation set in terms of the network graph theory. The numerical stability problem is solved by alternating use of fixed time-step and varied time-step, and the voltage and current with their fundamental components of the power winding are obtained. For the other sub-system of the induction generator with dual-stator winding and solid cage rotor, the electromagnetic field analysis method and the multi-variable optimization approach are combined to get the con-trol winding current and stator frequency. Calculated results well match experiment results, indicating that the new proposed method is of effectiveness and high ac-curacy.展开更多
结合定子双绕组感应发电机(DWIG)在风力发电场合的运行特点,建立了风力DWIG的优化设计模型,提出了相应的优化目标、优化变量及约束条件。针对粒子群优化算法早熟收敛的问题,提出了一种具有向成功和失败双重学习能力的遗传-粒子群综合算...结合定子双绕组感应发电机(DWIG)在风力发电场合的运行特点,建立了风力DWIG的优化设计模型,提出了相应的优化目标、优化变量及约束条件。针对粒子群优化算法早熟收敛的问题,提出了一种具有向成功和失败双重学习能力的遗传-粒子群综合算法(GPSMA)。在此基础上,分别以转速范围内的控制绕组电流及额定效率为优化目标,利用GPSMA对一台18.5 k W的DWIG进行了优化设计,并对2套优化方案进行了分析。结果表明,优化之后的样机的控制绕组电流最大值下降了62.7%或额定效率提高了0.94%,说明GPSMA有助于DWIG优化设计。展开更多
文摘To minimize the reactive power of the converter of the control winding in the novel dual stator-winding induction generator based on the PWM converter, design features of the induction generator with a rectified load are proposed. The optimization method of excited capacitors to minimize the reactive power of the control winding at a variable speed is given. The calculation capacity of the machine with a diode bridge rectifier load is proposed. To achieve global searching, the integrated method with the improved real-coded genetic algorithm and the twodimensional finite element method (FEM) is introduced. Design results of the sample show that reactive power can be reduced by the method, and the converter capacity can be decreased to 1/3 of output rated power at the speed ratio of 1 : 3, thus reducing the volume and the mass of the inverter.
基金Supported by the National Natural Science Foundation of China (Grant No. 50747024)
文摘Based on analysis and calculation of the relation between current harmonics and MMF harmonics in the dual-stator winding multi-phase high-speed induction gen-erator with a rectifier load, a new idea, which divides the generator system into two sub-systems to be analyzed individually, is presented. For the sub-system of the 12-phase power winding with a rectifier load, the loop current method is used to establish network equation set in terms of the network graph theory. The numerical stability problem is solved by alternating use of fixed time-step and varied time-step, and the voltage and current with their fundamental components of the power winding are obtained. For the other sub-system of the induction generator with dual-stator winding and solid cage rotor, the electromagnetic field analysis method and the multi-variable optimization approach are combined to get the con-trol winding current and stator frequency. Calculated results well match experiment results, indicating that the new proposed method is of effectiveness and high ac-curacy.
文摘结合定子双绕组感应发电机(DWIG)在风力发电场合的运行特点,建立了风力DWIG的优化设计模型,提出了相应的优化目标、优化变量及约束条件。针对粒子群优化算法早熟收敛的问题,提出了一种具有向成功和失败双重学习能力的遗传-粒子群综合算法(GPSMA)。在此基础上,分别以转速范围内的控制绕组电流及额定效率为优化目标,利用GPSMA对一台18.5 k W的DWIG进行了优化设计,并对2套优化方案进行了分析。结果表明,优化之后的样机的控制绕组电流最大值下降了62.7%或额定效率提高了0.94%,说明GPSMA有助于DWIG优化设计。