基于单片机的智能温度控制系统设计.doc
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1、Journal of Harbin Institute of Technology ( New Series) , Vol 21, No 3, 2014 Intelligent Temperature Control System Design Based on Single-Chip Microcomputer Jun Li 1 , Xian-Lin Meng , Wen-Long Song 1 ( 1 College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040,
2、 China; 2 School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin 150001, China) Abstract: A design method of an intelligent temperature control system based on single-chip microcomputer is presented in this paper The intelligent temperature control system is divide
3、d into four parts: monitor , heater, controlled process and feedback loop Among them, the temperature detection circuit is designed with the conductivity of water by sensor detection The optical coupler MOC3041 is used to implement the power control circuit, whose control object is 1 kW electric hea
4、ter with the 220 V alternating current power; keyboard and display circuit SMC1602A include four buttons and LCD display to achieve human-computer interaction; Based on single-chip system STC89C52, the sensor signal and keyboard set target temperature are compared to the power automatically in order
5、 to finish the water temperature control Through the static and dynamic data testing, the results show that the proposed method provides an effective way to realize the real-time acquisition and control of temperature Keywords: microcontroller; temperature sensors; power control; SC CLC number: TP29
6、 Document code: A Article ID: 1005-9113( 2014) 03-0091-04 1 Introduction Temperature is the representation of a physical temperature hourly, so to maximize the performance of the combined water chiller and cooling tower system Zhen proposed a typical multi -variable, large time delay and nonlinear s
7、ystem, self-extracting rules fuzzy quantity of hot and cold objects and one of the most control ( SE FC ) method to maintain a stable basic physical quantity in our production and life temperature value in a built environment chamber with 10 Temperature measurement is related to various fields of su
8、pply air system and hot-water system Based on industry and agricultural production Temperature the modified output-input feedback ( OIF ) Elman control is of critical importance to ensure the neural networks and the prediction principle, an effectiveness of the industrial production Temperature adap
9、tive PID decoupling controller is designed to control system also 1 is an important part of vacuum achieve the rapid, precise and especially independent smeltingprocess Therefore, the temperature control 2 control for the upstream and downstream temperatures systemis widely used such as industrializ
10、ed culture 3 4 , of the double-level air flow 11 field dynamic vacuum green granary , 5 Fumigation therapy , air- ( DAFDV) coupling system conditioning system , and so on How to select an The present study focuses on software designs approximately optimal control strategy through real-time including
11、 approaches and strategies to control monitoring data becomes 6 7 a key factor for the energy- temperature changes in different application fields and saving operation the research work of temperature control system Various strategies have been applied on the hardware design are relatively small amo
12、unt However, temperature control system The fuzzy self-tuning if there is no corresponding hardware support, a good proportional-integral-derivative ( P ID ) algorithm, method is also unable to be used In this paper, the which is easy to implement and be effective, has been 8 main work is to design
13、for the hardware circuit We use widelyused in the temperature control system An single chip microcomputer to develop intelligent optimal approach temperature ( OAT ) control strategy temperature control system, which has a higher is proposed for resetting the condensing water control convenient , lo
14、w cost , flexibility advantages It is eceived 2014 02 17 Sponsored by the Fundamental esearch Funds for Heilongjiang Postdoctoral Grant( Grant No L B11-334 ) , Natural Science Foundation of Heilongjiang Province( Grant No QC2013C035 ) , Heilongjiang Province Education Department of Science and Techn
15、ology esearch Foundation ( Grant No 12533014) , and the Foundamental esearch Funds for the Central Universities( Grant No 2572014CB13 ) Corresponding author: Wen-Long Song E-mail: wlsong139 126 com 91 2 9 Journal of Harbin Institute of Technology ( New Series) , Vol 21, No 3, 2014 proved in the expe
16、riment that the design has the heating pipe and the temperature will be controlled in obvious effect for technical indicators to improve the our system Here, the interference signal is mainly due temperature control As the hardware support , our to the heating power changes caused by contact with co
17、ntrol system will be fit for other temperature control other objects methods The control system includes four units, such as feedback loop ( temperature detection circuit) Fig 1 shows the diagram of the designed control system Fig 1 The system structure diagram the temperature of the water tank is d
18、etected by the 3 System Circuit Design which will give the quantity of temperature control The shown in Fig 2 heater will receive heating instructions Finally, the power controller can control the heating power of the 42%).&5 ($)*$%#+%$ ,$#$-#./&-.%-+.# 0/1$%-/%/2-.%-+.# !#$%2$3$2 ,$#$-#./&-.%-+.#
19、 4(06789: ;$)?& *ABCD 5/ # 1 5/ 5/ & 7 5/ 6 !#$%&( $)*+,-./0#12+34 Fig 3 Package diagram of DS18B20 70)#$#0(#860%4 !#$%&(%)#* 9-# )#+,#%)-# )#+,#%)-# 5)/%6# )%03 monitor, heater, controlled process ( storage tank) and 4/, In Fig 1, the water tank is the controlled object; temperature sensor and then
20、 the signal is transmitted to Accordingto the structure diagram of control system, we can build the circuit principle diagram, as and the prefabricated signal are compared with SCM .?+.,-%#2 12 13 14 Journal of Harbin Institute of Technology ( New Series) , Vol 21, No 3, 2014 . ./ /% Fig 4 Power con
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