电耦合对PWM电机绕组暂态电压分布的影响

A. Bohori, S. Ratadiya, N. Kumar, Rihong Mo, T. Asokan
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引用次数: 5

摘要

使用IGBT的快速开关可以显著提高电机的控制和效率,但同时也会在电机终端产生3至4pu的过电压,并且定子绕组上的电压分布不均匀,这往往会危及绝缘可靠性。可靠的机器设计要求准确预测逆变器脉冲上升时间、电缆和绕组参数等各种系统变量下的电压分布。在过去,世界各地已经做出了重大的努力来预测过电压和电压分布在绕组上。所有的模型都显示出线性电压分布,而实验结果往往显示出非线性电压分布,特别是在三相系统中。本文系统地模拟了一个三相分布式模型,该模型由(i)绕组和电缆的R、L和C, (ii)与绕组和电缆相关的耦合以及(iii)槽和悬垂部分的独立表示组成。该电路模型的计算结果与实验结果吻合较好。首次捕捉到线圈波形中的非线性电压分布和负驼峰,并对结果与耦合参数的关系进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electro-coupling effect on the transient voltage distribution in PWM motor winding
Faster switching with IGBT's is known to enhance the control and efficiency of electrical machines significantly while the same is realized to induce over-voltages at the machine terminal to an extent of 3 to 4pu along with inhomogeneous voltage distribution across the stator winding, which often endanger the insulation reliability. Reliable machine design calls for accurate prediction of voltage distribution under various system variables such as inverter pulse rise time, cable and winding parameters. Significant efforts around the world have been made in the past to predict the over-voltages and volt- distribution across the winding. All the reported models display a linear voltage distribution whilst the experimental results often exhibit non-linear voltage distribution, particularly in 3-phase system. In the present paper, a 3-phase distributed model that constitutes (i) R, L and C of winding and cables, (ii) couplings associated with windings and cables and (iii) independent representation of slot and over hang portion is simulated systematically. The results obtained through the present circuit model are found to match well with the experiments. The nonlinear voltage distribution and negative hump in coil waveform is captured first time and the results are discussed in relation to coupling parameters.
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