首页> 外文OA文献 >A Dual Five-Level Inverter-Fed Induction Motor Drive With Common-Mode Voltage Elimination and DC-Link Capacitor Voltage Balancing Using Only the Switching-State Redundancy—Part II
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A Dual Five-Level Inverter-Fed Induction Motor Drive With Common-Mode Voltage Elimination and DC-Link Capacitor Voltage Balancing Using Only the Switching-State Redundancy—Part II

机译:仅使用开关状态冗余的具有共模电压消除和直流链路电容器电压平衡的双五电平逆变器馈电感应电动机驱动器-第二部分

摘要

The open-loop control scheme presented in part I of this paper for a dual five-level-inverter-fed induction motor(IM) drive with two dc power supplies maintains dc-link capacitor voltage balancing and common-mode voltage (CMV) elimination throughout the operating range of the drive. The operating limitation of the proposed open-loop control scheme to take corrective action toward the existing unbalance in the dc-link-capacitor voltages is also pointed out in part I of this paper. As a solution to this, a simple closed-loop control scheme, which is based only on the switching-state redundancy, is proposed in this part of the paper. The proposed closed-loop control scheme not only prevents further unbalancing of capacitor voltages but also takes corrective actions to bring back the capacitor voltages in the balanced state. The proposed closed-loop scheme achieves dc-link capacitor voltage balancing and elimination of CMV together in the complete modulation range, including overmodulation of up to the 24-step operation. The proposed control scheme does not affect the output fundamental voltage generated by the inverter, as it effectively utilizes only the availability of redundant switching states of the inverter, and does not call for additional power circuit hardware. The scheme is presented with the simulation studies and experimentally verified with a 1.5-kW open-end winding IM drive.
机译:本文第一部分中提出的带有两个直流电源的双五电平逆变器反馈感应电动机(IM)驱动器的开环控制方案可保持直流链路电容器电压平衡和消除共模电压(CMV)在驱动器的整个工作范围内。本文的第一部分还指出了拟议的开环控制方案的操作局限性,以针对直流链路电容器电压中的现有不平衡采取纠正措施。作为对此的解决方案,本文的这一部分提出了一种仅基于开关状态冗余的简单闭环控制方案。所提出的闭环控制方案不仅防止电容器电压进一步不平衡,而且采取纠正措施以使电容器电压回到平衡状态。所提出的闭环方案可在整个调制范围内实现直流链路电容器电压平衡和CMV消除,包括高达24步操作的过调制。所提出的控制方案不会影响逆变器产生的输出基本电压,因为它仅有效利用逆变器冗余开关状态的可用性,并且不需要额外的电源电路硬件。该方案与仿真研究一起提出,并通过1.5 kW开放式绕组IM驱动器进行了实验验证。

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  • 年度 2007
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  • 入库时间 2022-08-31 14:51:51

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