外文翻译---基于STM32的恒温箱温度控制系统
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1、Thermo Tank Temperature Control System Based On STM32 Biao QIU( ) , Shi-guang LI( ), Zheng-zhong GAO( ), Xu ZHANG( ), Yu RUI( ) (School of Information and Electrical Engineering, Shandong University of Science and Technology, Qingdao 266510, China) Abstract-this paper introduced a thermo tank temper
2、ature control system based on STM32, Firstly, the temperature acquisition is realized by the high-precision electrical bridge based on constant current source. Then the augmented PID algorithm realized by software is adopted Butterworth filter is used to convert the output PWM of STM32 to current si
3、gnal which is used to control the semiconductor control rectifier to adjust the temperature. Calibration check and practical application both indicated that the system was reliable, high-precision, practicable and could meet reality needs. Key words-STM32; thermo tank; temperature acquisition; PID M
4、anuscriptNumber: 1674-8042(2011)01-0064-03 Dio: 10.3969/j.issn.1674-8042.2011.01.16 1 introduction Thermo tank can be divided into low temperature thermo tank and high temperature thermo tank according to temperature range. Heating control thermo tank is one kind of high temperature thermo tank and
5、has a wide range of applications in industrial, medical and scientific areas. As some special thermo tank control system require high precision in temperature acquisition and control, the system designed in this paper can measure temperatures from 16 to 80 and its precision is superior to 0.05 . As
6、ARM is gradually occupying the microelectronics market for its powerful function and low cost, it is of important practical significance and value to design a temperature control system based on ARM with high precision, simple structure and low cost. 2 Basic control principles of thermo tank In this
7、 system, temperature acquisition of the inner thermo tank is realized by using platinum resistance as temperature sensor and bridge circuit based on constant current source. Then compare the actual temperature with the temperature set by touch screen. By using augmented PID algorithm to adjust, STM3
8、2 outputs 16-bit PWM signals. Then convert PWM signal to voltage signal to control the conduction angle of Semiconductor Control Rectifier(SCR) which controls the heating tubes. System control principle is shown in Fig.1. Considering the system accuracy and stability requirements, features of this s
9、ystem include: powerful and high speed ARM STM32F103 as the controller, augmented PID algorithm, and full use of on-chip resources of microcomputer such as ADC, USART and 16-bit PWM output for great control accuracy. Fig 1 System control principle 3 hardware design This system includes temperature a
10、cquisition bridge circuit, STM32F103, color LCD touch screen control circuit, filtering circuit and SCR. In addition, the system has a good man-machine interaction function and can realize real-time monitoring and control by using 5.6 inches color LCD and touch screen. Temperature control system str
11、ucture is shown in Fig.2. Fig 2 System structure 3.1 temperature acquisition and A/D conversion Among the thermal resistance temperature sensors, platinum resistance, with advantage as high precision, stable performance, corrosion resistance and easy to use, is the ideal temperature acquisition comp
12、onent widely used in industrial environments and control systems. As the temperature acquisition range is 16 to 80 , Pt1000 is chosen as temperature sensor, which resistance changes with temperature according to certain rules and has good high precision and stable performance. Unbalanced bridge meas
13、urement is typical in detect circuits using platinum resistance as temperature sensors1. However, the nonlinearity between platinum resistance and temperature and nonlinearity of unbalanced bridge lead to acquisition error, thus we improved the temperature acquisition bridge circuit. Use constant cu
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- 外文 翻译 基于 stm32 恒温箱 温度 控制系统
