Energy model based sensorless estimation method for operational temperature of braking resistor onboard metro vehicles

Leiting Zhao, Kan Liu, Donghui Liu, Zheming Jin
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Abstract

Purpose This study aims to improve the availability of regenerative braking for urban metro vehicles by introducing a sensorless operational temperature estimation method for the braking resistor (BR) onboard the vehicle, which overcomes the vulnerability of having conventional temperature sensor. Design/methodology/approach In this study, the energy model based sensorless estimation method is developed. By analyzing the structure and the convection dissipation process of the BR onboard the vehicle, the energy-based operational temperature model of the BR and its cooling domain is established. By adopting Newton's law of cooling and the law of conservation of energy, the energy and temperature dynamic of the BR can be stated. To minimize the use of all kinds of sensors (including both thermal and electrical), a novel regenerative braking power calculation method is proposed, which involves only the voltage of DC traction network and the duty cycle of the chopping circuit; both of them are available for the traction control unit (TCU) of the vehicle. By utilizing a real-time iterative calculation and updating the parameter of the energy model, the operational temperature of the BR can be obtained and monitored in a sensorless manner. Findings In this study, a sensorless estimation/monitoring method of the operational temperature of BR is proposed. The results show that it is possible to utilize the existing electrical sensors that is mandatory for the traction unit’s operation to estimate the operational temperature of BR, instead of adding dedicated thermal sensors. The results also validate the effectiveness of the proposal is acceptable for the engineering practical. Originality/value The proposal of this study provides novel concepts for the sensorless operational temperature monitoring of BR onboard rolling stocks. The proposed method only involves quasi-global electrical variable and the internal control signal within the TCU.
基于能量模型的地铁车辆制动电阻工作温度无传感器估计方法
为了提高城市地铁车辆再生制动的可用性,本研究引入了一种车载制动电阻(BR)的无传感器工作温度估计方法,克服了传统温度传感器的脆弱性。本文提出了一种基于能量模型的无传感器估计方法。通过对车载BR结构和对流耗散过程的分析,建立了基于能量的BR工作温度模型及其冷却域。采用牛顿冷却定律和能量守恒定律,可以描述BR的能量和温度动态。为了最大限度地减少各种传感器(包括热传感器和电传感器)的使用,提出了一种仅考虑直流牵引网络电压和斩波电路占空比的再生制动功率计算方法;它们都可用于车辆的牵引控制单元(TCU)。通过实时迭代计算和更新能量模型参数,可以无传感器地获得和监测BR的工作温度。本研究提出了一种无传感器的BR运行温度估计/监测方法。结果表明,可以利用现有的牵引装置运行所需的电传感器来估计BR的运行温度,而不是增加专用的热传感器。计算结果也验证了该方案的有效性,为工程实际所接受。本研究的提出为机车车辆无传感器运行温度监测提供了新的思路。该方法只涉及准全局电变量和TCU内部控制信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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