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首页> 外文期刊>Journal of Electrical and Computer Engineering >Improvement of High-Power Three-Level Explosion-Proof Inverters Using Soft Switching Control Based on Optimized Power-Loss Algorithm
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Improvement of High-Power Three-Level Explosion-Proof Inverters Using Soft Switching Control Based on Optimized Power-Loss Algorithm

机译:基于最佳功率损耗算法的软开关控制改进大功率三电平防爆逆变器

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摘要

The high-power three-level explosion-proof inverters demand high thermal stability of power devices, and a set of theories and methods is needed to achieve an accurate power-loss calculation of power devices, to establish heat dissipation model, and ultimately to reduce the power loss to improve thermal stability of system. In this paper, the principle of neutral point clamped three-level (NPC3L) inverter is elaborated firstly, and a fourth-order RC equivalent circuit of IGBT is derived, on which basis the power-loss model of IGBT and the optimized maternal power-loss thermal model, using an optimized power-loss algorithm, are established. Secondly, in accordance with the optimized maternal power-loss thermal model, the generic formulas of power-loss calculation are deduced to calculate the power-loss modification values of NPC3L and soft switching three-level (S3L) inverters, which will be the thermal sources during thermal analysis for maternal power-loss thermal models. Finally, the experiment conducted on the 2.1 MW experimental platform shows that S3L inverter has the same excellent output characteristics with NPC3L inverter, reduces the power loss significantly by 213 W in each half-bridge, and decreases the temperature by 10°C, coinciding with the theoretical calculation, which verifies the accuracy of optimized power-loss algorithm and the effectiveness of the improvement.
机译:大功率三电平防爆逆变器要求功率器件具有很高的热稳定性,需要一套理论和方法来实现功率器件的准确功率损耗计算,建立散热模型并最终减少功率损耗。功率损耗,以提高系统的热稳定性。本文首先阐述了中性点钳位三电平(NPC3L)逆变器的原理,并推导了IGBT的四阶RC等效电路,在此基础上,对IGBT进行了功率损耗模型设计,并优化了母功率。使用优化的功率损耗算法,建立了损耗热模型。其次,根据优化的母体功率损耗热模型,推导了功率损耗计算的通用公式,以计算NPC3L和软开关三电平(S3L)逆变器的功率损耗修正值。母体功率损耗热模型的热分析过程中的热源。最后,在2.1 MW实验平台上进行的实验表明,S3L逆变器具有与NPC3L逆变器相同的出色输出特性,每个半桥的功率损耗均降低213 W,温度降低10°C,这与理论计算,验证了优化功耗算法的准确性和改进的有效性。

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