Method of reliability control of thermoelectric systems to ensure thermal regimes

Vladimir P. Zaykov, V. Mescheryakov, Andrey S. Ustenko
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Abstract

The paper presents the results of research of controllability of the thermoelectric system for ensuring thermal modes of electronic equipment, including a regulator, a cooler, and a component of excess heat removal to the environment. It is shown that for the use of methods of optimization of automatic control systems it is necessary to study the transfer and dynamic characteristics of the object - thermoelectric cooling device with one input and one output. The mathematical model of the thermoelectric cooler of the system of providing thermal modes of a given design is presented, which takes into account the influence of the conditions of interaction of the heat sink with the medium on the main significant parameters, reliability indicators, dynamic and energy characteristics of the single stage cooler. The model is created for the operating range of cooling, level of thermal load, geometry of thermocouple branches, different temperature of the medium, for the characteristic thermal regime of maximum cooling capacity. The results of calculations of the main significant parameters, reliability indicators, dynamic and energy characteristics of the cooler for different medium temperature in the operating temperature range and variation of conditions of heat exchange of the heat sink with the medium are given. It is shown that as the intensity of heat exchange of the heat sink with the medium increases, the temperature difference between the heat sink and the medium decreases. This makes it possible to significantly reduce the relative failure rate, increase the probability of failure-free operation of the thermoelectric cooler and control the reliability indicators of the device of a given design during operation.
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确保热制度的热电系统可靠性控制方法
论文介绍了确保电子设备热模式的热电系统可控性研究成果,包括调节器、冷却器和向环境排出多余热量的部件。研究表明,要使用自动控制系统的优化方法,就必须研究对象--具有一个输入和一个输出的热电冷却装置--的传输和动态特性。该模型考虑了散热器与介质相互作用条件对单级冷却器主要重要参数、可靠性指标、动态和能量特性的影响。该模型是根据冷却工作范围、热负荷水平、热电偶分支的几何形状、介质的不同温度、最大冷却能力的特征热制度而创建的。给出了工作温度范围内不同介质温度下冷却器的主要重要参数、可靠性指标、动态和能量特性的计算结果,以及散热器与介质热交换条件的变化情况。结果表明,随着散热器与介质热交换强度的增加,散热器与介质之间的温差减小。这就有可能大大降低相对故障率,提高热电冷却器无故障运行的概率,并控制特定设计的设备在运行期间的可靠性指标。
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