首页> 外文会议>IET International Conference on Power Electronics, Machines and Drives >Generalized current control scheme for unity power factor two-level and three-level bi-directional front-end power converters: An approach for multi-level front-end converters
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Generalized current control scheme for unity power factor two-level and three-level bi-directional front-end power converters: An approach for multi-level front-end converters

机译:统一功率因数两级和三级双向前端功率转换器的通用电流控制方案:一种用于多级前端转换器的方法

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Analysis of two-level and three-level front-end boost-converter employing current error space phasor based hysteresis controller is presented in this paper for various line-side and load-side conditions. Due to the coordination between all the three-phases and selecting only adjacent voltage vectors, the proposed controller is able to overcome limitations of conventional hysteresis current controller; like, limit cycle oscillation, overshoot in current error and random switching of voltage vectors. Generally, current error space phasor based hysteresis controller requires two hysteresis bands and look-up tables for region and sector detection. Because of sector change detection achieved with the help of outer hysteresis band, the current error space phasor moves out of the inner-boundary six-times in a fundamental cycle for two-level and eighteen times in a fundamental cycle for three-level operation, which deteriorates shape of input current waveform. In the proposed work, sector change detection logic is developed without using any outer-hysteresis band and look-up table for two-level converter and the same logic is reported with hardware verification. Transient performance of the proposed controller with two-level and three-level converter is also studied and results are presented depicting good dynamic response and effectiveness of the proposed controller. Front-end converter with conventional hysteresis controller is implemented and hardware results are discussed. Three-level flying capacitor converter with capacitor voltage balancing scheme is analyzed employing the proposed controller for various load side and line side conditions and results are presented. The proposed controller with three-level front-end converter is able to maintain unity power factor and constant dc-link voltage with reduced Total Harmonic Distortion (%THD) at line side as compared to two-level converter.
机译:本文针对各种线路侧和负载侧条件,对采用基于电流误差空间相量的磁滞控制器的两级和三级前端升压转换器进行了分析。由于所有三相之间的协调并仅选择相邻的电压矢量,因此所提出的控制器能够克服传统的磁滞电流控制器的局限性。例如,极限循环振荡,电流误差过冲和电压矢量的随机切换。通常,当前基于误差空间相量的磁滞控制器需要两个磁滞带和用于区域和扇区检测的查找表。由于借助外部磁滞带实现了扇区变化检测,因此当前误差空间相量在一个基本周期内两次移出内边界两次,而在三个周期的基本周期内移出了18次,这会使输入电流波形的形状变差。在拟议的工作中,无需使用任何外部磁滞带和两级转换器的查找表即可开发出扇区变化检测逻辑,并通过硬件验证来报告相同的逻辑。还研究了具有两级和三级转换器的控制器的暂态性能,并给出了描述该控制器良好的动态响应和有效性的结果。实现了具有常规磁滞控制器的前端转换器,并讨论了硬件结果。利用所提出的控制器对负载侧和线路侧的各种条件进行了分析,研究了具有电容器电压平衡方案的三电平飞跨电容器变换器,并给出了结果。与两电平转换器相比,所提出的具有三电平前端转换器的控制器能够保持单位功率因数和恒定的直流链路电压,并且线路侧的总谐波失真(%THD)降低。

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