精确温度控制通过热电冷却器与PID控制器

Mayursinh D. Thakor, S. Hadia, Ashok Kumar
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引用次数: 15

摘要

雪崩光电二极管(APD)在遥感光电有效载荷中有着广泛的应用。APD的增益对温度非常敏感。因此,需要控制APD的温度以获得准确和稳定的结果。本文提出了一种基于Peltier元件的热电冷却器(TEC)精确温度控制系统。设计的电子系统采用基于PID的闭环系统进行精确控制。为此考虑了商用集成TEC控制器MAX1978。该控制器根据设定温度和测量温度之间的误差提供加热或冷却。基于负温度系数(NTC)的热敏电阻元件用于温度测量。该元件用于桥接网络,并向控制器提供连续反馈。用模拟负载对已开发的电子设备进行评估。通过硬件测试结果,实现了70mK的短期稳定性。测得珀尔帖元件的峰值功率接近4W。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precise temperature control through Thermoelectric Cooler with PID controller
Avalanche Photo Diode (APD) has wide applications in remote sensing electro optical payloads. APD's gain is highly sensitive to temperature. Hence, temperature of the APD needs to be controlled to get accurate & steady results. This paper proposes a Peltier element based Thermoelectric Cooler (TEC) system for precise temperature control. The design electronics system provides precise control by using PID based close loop system. A commercial available integrated TEC controller MAX1978 is considered for this purpose. This controller provides heating or cooling based on error between set temperature and measured temperature. A negative temperature coefficient (NTC) based Thermistor element is used for temperature measurement. This element is used in a bridge network and provides continuous feedback to controller. Developed electronics is evaluated with simulated load. With hardware test results, short term stability of 70mK is achieved. Peak power drawn by Peltier element is measured nearly 4W.
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