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Equivalent Electrical Model and Software Tool for SPICE-Compatible Thermal Simulations of High-Power Resistors

机译:与SPICE兼容的大功率电阻器热仿真的等效电气模型和软件工具

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摘要

Optimized design of high-power braking resistors for traction applications is a complex task. The value of the power dissipated can be very high (up to the order of megawatts) and normally pulsating. In addition, these resistors should stay in predefined, usually small areas on the train, which makes them have to meet some tough specifications: minimum weight, high resistance to vibration, and high reliability and durability. Since it is necessary to anticipate and establish the distribution and evolution of the temperatures reached in different internal areas, it would be necessary to develop a complete numerical simulation using a software tool based on computational fluid dynamics (CFD) for each design, which implies a very high-computational cost. In this paper, a new equivalent electrical circuit is proposed to model the thermal behavior of this kind of resistors. The electrical equivalent circuit parameters are obtained by a newly developed software tool that collects results and trends obtained from a large number of previous CFD simulations. After that, SPICE can be employed to obtain thermal simulations and predict temperature evolutions.
机译:针对牵引应用的大功率制动电阻器的优化设计是一项复杂的任务。耗散的功率值可能非常高(高达兆瓦级),并且通常会脉动。此外,这些电阻应留在列车上预定的,通常较小的区域中,这使其必须满足一些严格的规格要求:最小的重量,较高的抗振动性以及较高的可靠性和耐久性。由于有必要预测并确定在不同内部区域中达到的温度的分布和演变,因此有必要使用基于计算流体动力学(CFD)的软件工具对每个设计进行完整的数值模拟,这意味着计算成本很高。在本文中,提出了一种新的等效电路来模拟这种电阻的热行为。等效电路参数是通过新开发的软件工具获得的,该工具收集了从大量以前的CFD模拟中获得的结果和趋势。此后,可以使用SPICE获得热仿真并预测温度变化。

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