One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing...One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing and superimpose theory can keep the voltage balance through compensating the positive-, negative- and zero-sequence components of the output voltage of inverter, however, this method is time-consuming and not suitable for control. Aiming at high power medium frequency inverter source, a P+Resonant (Proportion and Resonant) controller which ensured a balanced three phase output voltage under unbalanced load is proposed in this paper. The regulator was proved to be applicable to both three-phase three-wire system and three-phase four-wire system and developed two methods of realization. The simulation results verified that this method can suppressed effectively the output voltage distorted caused by the unbalanced load and attained a high quality voltage waveforms.展开更多
为解决中频感应加热电源在受到温度、工件材质等因素变化影响时固有频率发生波动的问题,提出了一种基于模数转换(Analog to Digital,A/D)采样优化的感应加热电源谐振频率自适应追踪方法。在一个感应加热电源的输出周期内,细化电流A/D采...为解决中频感应加热电源在受到温度、工件材质等因素变化影响时固有频率发生波动的问题,提出了一种基于模数转换(Analog to Digital,A/D)采样优化的感应加热电源谐振频率自适应追踪方法。在一个感应加热电源的输出周期内,细化电流A/D采样过程,找到输出电流与电压的相位差并判断系统状态。在优选A/D采样次数的基础上,设计自适应调节机制来追踪谐振频率,使系统达到准谐振状态。以TMS320F28335控制芯片为基础搭建感应加热电源样机,对所采用频率自适应追踪方法进行了验证。实验结果表明,频率自适应追踪方法在环境温度变化剧烈时可避免系统受到干扰,并且能在无硬件过零检测电路的情况下快速追踪负载的谐振频率。展开更多
A periodic layered medium, with unit cells consisting of a dielectric and an electromagnetically-induced transparency (EIT)-based atomic vapor, is designed for light propagation manipulation. Considering that a dest...A periodic layered medium, with unit cells consisting of a dielectric and an electromagnetically-induced transparency (EIT)-based atomic vapor, is designed for light propagation manipulation. Considering that a destructive quantum interference relevant to a two-photon resonance emerges in EIT-based atoms interacting with both control and probe fields, an EIT-based periodic layered medium exhibits a flexible frequency-sensitive optical response, where a very small variation in the probe frequency can lead to a drastic variation in reflectance and transmittance. The present EIT-based periodic layered structure can result in controllable optical processes that depend sensitively on the external control field. The tunable and sensitive optical response induced by the quantum interference of a multi-level atomic system can be applied in the fabrication of new photonic and quantum optical devices. This material will also open a good perspective for the application of such designs in several new fields, including photonic microcircuits or integrated optical circuits.展开更多
基金supported by National Natural Science Foundation of China(61304263,61233007)the Cross-disciplinary Collaborative Teams Program for Science,Technology and Innovation of Chinese Academy of Sciences-Network and System Technologies for Security Monitoring and Information Interaction in Smart Arid
文摘One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing and superimpose theory can keep the voltage balance through compensating the positive-, negative- and zero-sequence components of the output voltage of inverter, however, this method is time-consuming and not suitable for control. Aiming at high power medium frequency inverter source, a P+Resonant (Proportion and Resonant) controller which ensured a balanced three phase output voltage under unbalanced load is proposed in this paper. The regulator was proved to be applicable to both three-phase three-wire system and three-phase four-wire system and developed two methods of realization. The simulation results verified that this method can suppressed effectively the output voltage distorted caused by the unbalanced load and attained a high quality voltage waveforms.
文摘为解决中频感应加热电源在受到温度、工件材质等因素变化影响时固有频率发生波动的问题,提出了一种基于模数转换(Analog to Digital,A/D)采样优化的感应加热电源谐振频率自适应追踪方法。在一个感应加热电源的输出周期内,细化电流A/D采样过程,找到输出电流与电压的相位差并判断系统状态。在优选A/D采样次数的基础上,设计自适应调节机制来追踪谐振频率,使系统达到准谐振状态。以TMS320F28335控制芯片为基础搭建感应加热电源样机,对所采用频率自适应追踪方法进行了验证。实验结果表明,频率自适应追踪方法在环境温度变化剧烈时可避免系统受到干扰,并且能在无硬件过零检测电路的情况下快速追踪负载的谐振频率。
基金supported by the Taiwan Science Council (Nos.NSC 99-2811-M-216-001 and NSC 99-2112-M-216-002)the National Natural Science Foundation of China (Nos.60990320 and 60990322)+1 种基金the Natural Science Foundation of Zhejiang Province in China (No.Y6100280)the Fundamental Research Funds for the Central Universities of China
文摘A periodic layered medium, with unit cells consisting of a dielectric and an electromagnetically-induced transparency (EIT)-based atomic vapor, is designed for light propagation manipulation. Considering that a destructive quantum interference relevant to a two-photon resonance emerges in EIT-based atoms interacting with both control and probe fields, an EIT-based periodic layered medium exhibits a flexible frequency-sensitive optical response, where a very small variation in the probe frequency can lead to a drastic variation in reflectance and transmittance. The present EIT-based periodic layered structure can result in controllable optical processes that depend sensitively on the external control field. The tunable and sensitive optical response induced by the quantum interference of a multi-level atomic system can be applied in the fabrication of new photonic and quantum optical devices. This material will also open a good perspective for the application of such designs in several new fields, including photonic microcircuits or integrated optical circuits.