介绍了模块化多电平换流器型直流输电系统(modularmultilevel converter based high voltage direct current system,MMC-HVDC)的起停控制策略。启动分为不控启动阶段和可控启动阶段,对不控启动阶段模块化多电平换流器(modularmultileve...介绍了模块化多电平换流器型直流输电系统(modularmultilevel converter based high voltage direct current system,MMC-HVDC)的起停控制策略。启动分为不控启动阶段和可控启动阶段,对不控启动阶段模块化多电平换流器(modularmultilevel converter,MMC)的等效电路进行数学建模,得出了限流电阻与最大充电电流之间的数学关系,为限流电阻的选取提供了理论基础。停机分为能量反馈阶段和放电阶段,能量反馈阶段将MMC各子模块电容存储的能量部分反馈回电网,充分利用了MMC子模块储能的优势,提高了能量的利用率。放电阶段,通过一定的触发方式,逐步将能量耗散掉,该方法有效地降低了放电电阻的功率、阻值和耐压水平。最后,对建立的两端有源网络的MMC-HVDC系统进行了数字仿真,仿真结果验证了该启停控制策略的有效性。展开更多
Bearingless switched reluctance motor(BSRM) not only combines the merits of bearingless motor(BM) and switched reluctance motor(SRM), but also decreases the vibration and acoustic noise of SRM, so it could be a strong...Bearingless switched reluctance motor(BSRM) not only combines the merits of bearingless motor(BM) and switched reluctance motor(SRM), but also decreases the vibration and acoustic noise of SRM, so it could be a strong candidate for high-speed driving fields. Under the circumstances, a 12/14 BSRM with hybrid stator pole has been proposed due to its high output torque density and excellent decoupling characteristics between torque and suspension force. However, this motor has torque dead-zone, which leads to problems of self-start at some rotor positions and large torque ripple during normal operation. To solve the existing problems in the 12/14 type, an asymmetric rotor pole type BSRM is proposed. The structure and design process of the proposed motor is presented in detail. The characteristics of the proposed motor is analyzed and compared with that of the 12/14 type. Furthermore, prototype of the proposed structure is designed, manufactured and experimented. Finally, simulation and test results are illustrated and analyzed to prove the validity of the proposed structure.展开更多
文摘介绍了模块化多电平换流器型直流输电系统(modularmultilevel converter based high voltage direct current system,MMC-HVDC)的起停控制策略。启动分为不控启动阶段和可控启动阶段,对不控启动阶段模块化多电平换流器(modularmultilevel converter,MMC)的等效电路进行数学建模,得出了限流电阻与最大充电电流之间的数学关系,为限流电阻的选取提供了理论基础。停机分为能量反馈阶段和放电阶段,能量反馈阶段将MMC各子模块电容存储的能量部分反馈回电网,充分利用了MMC子模块储能的优势,提高了能量的利用率。放电阶段,通过一定的触发方式,逐步将能量耗散掉,该方法有效地降低了放电电阻的功率、阻值和耐压水平。最后,对建立的两端有源网络的MMC-HVDC系统进行了数字仿真,仿真结果验证了该启停控制策略的有效性。
基金supported by National Natural Science Foundation of China under Grant 52077141 and 51920105011Young and Middle-Aged Scientific and Technological Innovation Talent Program of Shenyang City of Liaoning Province of China under Grant RC200427。
文摘Bearingless switched reluctance motor(BSRM) not only combines the merits of bearingless motor(BM) and switched reluctance motor(SRM), but also decreases the vibration and acoustic noise of SRM, so it could be a strong candidate for high-speed driving fields. Under the circumstances, a 12/14 BSRM with hybrid stator pole has been proposed due to its high output torque density and excellent decoupling characteristics between torque and suspension force. However, this motor has torque dead-zone, which leads to problems of self-start at some rotor positions and large torque ripple during normal operation. To solve the existing problems in the 12/14 type, an asymmetric rotor pole type BSRM is proposed. The structure and design process of the proposed motor is presented in detail. The characteristics of the proposed motor is analyzed and compared with that of the 12/14 type. Furthermore, prototype of the proposed structure is designed, manufactured and experimented. Finally, simulation and test results are illustrated and analyzed to prove the validity of the proposed structure.