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Magnetically Coupled High-Voltage-Boost Split Y-Source Inverter Without Leakage-Induced Voltage Spikes

机译:磁耦合的高压 - 升压拆分Y源逆变器无漏电诱导的电压尖峰

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A three-winding coupled inductor, arranged as a Y-source network, has been used for voltage boosting with a standard inverter bridge and no other active switches. However, its maximum modulation and boost duty ratios are correlated with an increase of one maximum necessitating the reduction of the other. Its voltage quality and dc-bus utilization will hence deteriorate greatly at high gain. Moreover, in the presence of nonnegligible leakage, the Y-source network experiences large voltage spikes caused by unintentionally abrupt inductive current changes. Its coupling coefficient must hence be very close to unity or a snubber and always be added. To overcome these limitations, a split-Y-source inverter has been proposed, whose maximum modulation and boost duty ratios can be increased simultaneously, while using only a single-inverter bridge. It is also not burdened by inrush currents and voltage spikes and hence does not impose strict requirements on coupling and snubber. These advantages are in addition to the increased freedom of tuning two turns ratios to keep the total number of turns small, while retaining a high-voltage boost. Theoretical analyses, simulations, and experimental results have successfully verified the performance of the proposed inverter.
机译:布置为Y源网络的三绕组耦合电感器已被用于使用标准逆变器桥和没有其他有源开关的电压升高。然而,其最大调制和增强占空比是相关的,这增加了一个最大值,而需要减少另一个。它的电压质量和直流公交机利用率将在高增益下大大恶化。此外,在存在非资格的泄漏的情况下,Y源网络经历了由无意突然的电感电流变化引起的大电压尖峰。因此,其耦合系数必须非常接近Unity或Snubber,并且始终添加。为了克服这些限制,已经提出了一种分体式源逆变器,其最大调制和升压占空比可以同时增加,同时仅使用单反变频器桥。它也不会受到涌入电流和电压尖峰的负担,因此不会对耦合和缓冲器施加严格的要求。除了增加的调谐自由度之外,这些优点是两个转向比的自由度,以保持匝数的总数,同时保持高压升压。理论分析,仿真和实验结果已成功验证了所提出的逆变器的性能。

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