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On-state voltage drop based derating/uprating on a MW converter to improve reliability

机译:MW转换器上基于通态压降的降容/升压功能,以提高可靠性

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Power semiconductor devices are the most fragile components limiting reliability of power converters, where major stresses are temperature dependent parameters. Typically, the operating virtual maximum junction temperature is specified by a manufacturer for each individual device. The thermal system and operating load are designed based on this number. Online monitoring of an on-state collector-emitter voltage (v(ce,on)) and a junction temperature is necessary to ensure the design performance within a safe limit and also to make this method applicable for derating/uprating power. This paper presents the real time measurement of v(ce,on) and thereby the junction temperature estimation in high power converters. Knowing these parameters online, the maximum power capability can be detected. The operating maximum junction temperature is selected and thereby based on the operating condition the derating of power is shown for a megawatt (MW) converter. An experimental setup including online monitoring is described and the measurement of power derating is presented at the specified conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:功率半导体器件是最脆弱的组件,它限制了功率转换器的可靠性,而主要的应力是温度相关的参数。通常,制造商为每个单独的设备指定工作虚拟最高结温。根据该数字设计热力系统和运行负载。在线监测集电极-发射极的开态电压(v(ce,on))和结温是必要的,以确保设计性能在安全范围内,并使该方法适用于功率降额/升额。本文介绍了v(ce,on)的实时测量,从而给出了大功率转换器中的结温估计。在线了解这些参数,即可检测到最大功率。选择最大工作结温,从而根据工作条件显示兆瓦(MW)转换器的功率降额。描述了包括在线监控的实验设置,并在指定条件下给出了功率降额的测量。 (C)2015 Elsevier Ltd.保留所有权利。

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