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A Hybrid Solution for Load-Commutated-Inverter-Fed Induction Motor Drives

机译:负载换向逆变器供电的感应电动机驱动器的混合解决方案

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摘要

A novel, hybrid solution employing a combination of a load-commutated inverter (LCI) and a voltage-source inverter (VSI) is proposed for induction motor drives. By avoiding the use of output capacitors and a forced de-commutation circuit, this solution can eliminate all disadvantages related with these circuits in the conventional LCI-based induction motor drives. In addition, improved quality of output current waveforms and faster dynamic response can be achieved. The proposed hybrid scheme features the following tasks: 1) the safe commutation angle for the LCI, controlled by the VSI in the entire speed region of the induction motor and 2) a de-link current control loop to ensure minimum VSI rating. Advantages of the proposed solution over the conventional LCI-based induction motor drives include the following: 1) sinusoidal motor phase current and voltage based on the instantaneous motor speed control; 2) fast dynamic response by the VSI operation; and 3) elimination of motor circuit resonance and motor torque pulsation. The feasibility of the proposed hybrid circuit for the high-power drive system is verified by computer simulation for a 500-hp induction motor. Experimental results to support the use of the proposed system are also included for a 1-hp induction motor laboratory setup.
机译:提出了一种新颖的混合解决方案,该方案将负载换向逆变器(LCI)和电压源逆变器(VSI)结合使用,用于感应电动机驱动器。通过避免使用输出电容器和强制换向电路,该解决方案可以消除常规基于LCI的感应电动机驱动器中与这些电路相关的所有缺点。此外,可以提高输出电流波形的质量和更快的动态响应。提出的混合方案具有以下任务:1)LCI的安全换向角,由感应电动机整个速度范围内的VSI控制,以及2)去链电流控制环路,以确保最小的VSI额定值。与传统的基于LCI的感应电动机驱动器相比,该解决方案的优势包括:1)基于瞬时电动机速度控制的正弦电动机相电流和电压; 2)通过VSI操作实现快速动态响应; 3)消除电动机电路谐振和电动机转矩脉动。通过对500 hp感应电动机进行计算机仿真,验证了提出的混合电路在大功率驱动系统中的可行性。支持1 hp感应电动机实验室设置的实验结果也支持所建议系统的使用。

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