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Research on transient junction temperature rise of pulse thyristor

机译:脉冲晶闸管瞬态结温上升的研究

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Thyristor has been widely used in HVDC transmission system and pulsed power system. The thyristor will be damaged if transient temperature rise of valve plate is too high. It will result in the system failure if thyristors are damaged. The relationship between peak value of pulse current through the circuit and maximum transient temperature rise of thyristor in pulsed power system was investigated in this paper. Firstly, equivalent thermal impedance model was built. The thermal resistance and thermal capacitance can be obtained by transient thermal impedance curve fitting, and parameters of equivalent current source can be calculated from the power curve. The curve which reflected the change of temperature would be calculated by the thermal impedance simulation model as the pulse current through thyristor. Then one circuit used to measure junction temperature rise of thyristor was designed, which was based on the theory that there is a linear relationship between the conducting voltage drop of thyristor and junction temperature rise of thyristor. The thyristor was kept on during the measuring process in the designed circuit. The junction temperature rise of thyristor was calculated through the thermal sensitive curve and the change of the conducting voltage drop of thyristor. The maximum junction temperature rise of thyristor was obtained after one heavy pulse current through. The junction temperature rise of thyristor obtained from the simulation result was almost the same as temperature rise obtained from experiment data. A method to evaluate the temperature rise of thyristor was obtained through the research.
机译:晶闸管已广泛应用于高压直流输电系统和脉冲功率系统中。如果阀板的瞬态温升过高,则可控硅将被损坏。如果晶闸管损坏,将导致系统故障。研究了脉冲电源系统中通过电路的脉冲电流的峰值与晶闸管的最大瞬态温升之间的关系。首先,建立等效热阻模型。通过瞬态热阻抗曲线拟合可以获得热阻和热容,并可以从功率曲线计算出等效电流源的参数。通过热阻仿真模型,将计算反映温度变化的曲线作为通过晶闸管的脉冲电流。然后基于晶闸管的导通电压降与晶闸管的结温上升之间存在线性关系的理论,设计了一种用于测量晶闸管的结温上升的电路。在设计电路的测量过程中,晶闸管保持导通状态。通过热敏曲线和晶闸管导通压降的变化来计算晶闸管的结温升高。经过一个大脉冲电流后,晶闸管的最大结温升高。从仿真结果获得的晶闸管结温升高与从实验数据获得的温升几乎相同。通过研究获得了一种评估晶闸管温升的方法。

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