High-precision Compact Intelligent Temperature Control System Based on Multithreading

Tao Li, Fei Shen
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Abstract

Based on multithreading, a compact temperature control system with high accuracy and low latency is designed in this paper. The system aims to provide some small-sized precision instruments with a constant temperature working environment. In this paper, there are some novelty designs such as voltage regulation circuit and structure of software. The experimental results show that the system designed in this paper can enter the stabilization stage quickly in 400 seconds, and the variance is less than 0.005, and the extreme range do not exceed 0.375 degrees Celsius at stabilization phase. This system can basically meet the special needs of miniaturization with high precision and low latency, and is expected to be widely used in the actual engineering or scientific research fields.
基于多线程的高精度紧凑型智能温控系统
本文设计了一种基于多线程技术的高精度、低时延的小型温度控制系统。该系统旨在为一些小型精密仪器提供恒温工作环境。本文在稳压电路、软件结构等方面进行了新颖的设计。实验结果表明,本文设计的系统可以在400秒内快速进入稳定阶段,且稳定阶段的方差小于0.005,极端范围不超过0.375摄氏度。该系统基本能满足微型化、高精度、低时延的特殊需求,有望在实际工程或科研领域得到广泛应用。
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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