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High-Speed Searching of Optimum Switching Pattern for Digital Active Gate Drive Circuit of Full Bridge Inverter Circuit

机译:高速搜索全桥逆变器数字有源栅极驱动电路的最佳开关模式

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Active gate drive technique enables the adjustability of driving waveform for individual time interval and improves switching characteristics of power device. To be further efficient in search of optimal driving pattern for digital gate drive IC, this paper put a focus on design framework of driving pattern. In fact, the design framework of driving pattern has the direct impact on how sophisticated is the driving waveform. The more detailed is the pattern framework, the more complicated is the searching issues. Thus, it causes longer searching time and requires much computation effort. Based on typical optimization algorithm, the aim is to conserve computation time and reach to an improved switching performance. The objective function is formulated for switching loss reduction and suppression of surge voltage. Firstly, three horizontal configurations with different resolution degree for driving pattern are given. Next, individual optimization is carried out for each case. Based on a full bridge inverter with active gate driver, an online optimization platform is utilized to analyze the design framework of optimal driving pattern. At the end, the obtained driving pattern is able to reduce 33% of switching loss and constrain surge voltage below 10% of input voltage compared to conventional driving method. Compared to previous study, the searching time is shorten by 90%.
机译:有源栅极驱动技术使驱动波形在各个时间间隔内的可调性得以改善,并改善了功率器件的开关特性。为了进一步有效地寻找数字栅极驱动IC的最佳驱动模式,本文将重点放在驱动模式的设计框架上。实际上,驱动模式的设计框架直接影响驱动波形的复杂程度。模式框架越详细,搜索问题就越复杂。因此,这导致更长的搜索时间并且需要大量的计算工作。基于典型的优化算法,目的是节省计算时间并达到改善的开关性能。制定目标函数是为了降低开关损耗和抑制浪涌电压。首先,给出了三种不同驱动模式分辨率的水平配置。接下来,针对每种情况进行单独的优化。基于具有有源栅极驱动器的全桥逆变器,利用在线优化平台来分析最佳驱动模式的设计框架。最后,与传统驱动方法相比,所获得的驱动模式能够减少33%的开关损耗,并将浪涌电压限制在输入电压的10%以下。与以前的研究相比,搜索时间缩短了90%。

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