Design of control system for steady state combustion fogger based on IEEE1451.4

LI Zhaochun, ZHOU Hongping, CHEN Rui, CUI Yemin

JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2010, Vol. 34 ›› Issue (06) : 110-114.

PDF(1095048 KB)
PDF(1095048 KB)
JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2010, Vol. 34 ›› Issue (06) : 110-114. DOI: 10.3969/j.jssn.1000-2006.2010.06.024

Design of control system for steady state combustion fogger based on IEEE1451.4

  • LI Zhaochun1, ZHOU Hongping1, CHEN Rui1, CUI Yemin2
Author information +
History +

Abstract

In order to implement the automation and networking of the steady state combustion fogger, a smart transducer standard IEEE1451.4 was introduced in this paper to its control system of fogger for improving the degree of intelligence, and a systemic scheme of the intelligent control system with MMI and NCAP was put forward. By testing the relationship between temperature of the axis of nozzle mouth and burning time, as well as that between temperature of the axis of nozzle mouth and liquid flow, the appropriate delay time was obtained, based on which and the operating principles of the fogger the workflow of control system was designed. Furthermore, a “plug&play” thermocouple sensor was implemented by improving the traditional sensor through 1wire digital interface and by the way of automatic calibration method. Therefore, the thermocouple sensor was capable of connecting with control system seamlessly. Finally, the performance test of the control system was discussed which showed that the control system based on IEEE1451 could perfectly finish the whole spray process with good spray effect. This paper provided an efficient technology approach for developing intelligent control system of steady state combustion fogger.

Cite this article

Download Citations
LI Zhaochun, ZHOU Hongping, CHEN Rui, CUI Yemin. Design of control system for steady state combustion fogger based on IEEE1451.4[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY. 2010, 34(06): 110-114 https://doi.org/10.3969/j.jssn.1000-2006.2010.06.024

References

[1]梅光月. 我国烟雾机发展的新突破[J]. 中国卫生杀虫药械,2003,9(4):12-14. [2]周宏平,姜志宽,崔业民. 烟雾机及烟雾载药技术在卫生防疫中的研究与应用[J]. 中国卫生杀虫药械,2000,6(2):8-11.[3]Zheng Jiaqiang, Zhou Hongping, Cui Yemin, et al. Effect of CET structure of thermal fogger on pesticide fogging performances[C]//ASAE Annual Meeting. California, USA, 2001. [4]周宏平,姜志宽. 烟雾机的研究与发展[J]. 中国卫生杀虫药械,1999,5(3):4-6. [5]Tian L, Reid J R, Hummel J W. Development of precision sprayer for sitespecific weed management [J].Transaction of ASAE, 1999, 42(4): 893-900. [6]梁富浩,郑炜,阎祥安,等. 自控施药常温烟雾机的研制[J]. 甘肃农业大学学报,2007,42(1):105-109. [7]郑建秋,师迎春. 现代化施药机械——自动转向微电脑自控施药常温烟雾机[J]. 中国蔬菜,2004(6):63-64. [8]Jay Warrior. IEEE Std 1451.1: IEEE Standard for a Smart Transducer Interface for Sensors and ActuatorsNetwork Capable Application Processor (NCAP) Information Model[S]. New York: The Institute of Electrical and Electronics Engineers, Inc, 2000. [9]Kang Lee, IEEE P1451.4—A Smart Transducer Interface for Sensors and Actuators Mixedmode Communication Protocols and Transducer Electronic Data Sheet [EB/OL]. (2009-03-26)[2009-12-02]. http://www.IEEE1451.nist.gov/, 2009-03-16. [10]陈 杰,杨祥龙. IEEE1451.2智能传感器标准在温室中的应用探讨[J]. 农业工程技术,2007(1):19-20. [11]周敏刚,杨祥龙. 基于IEEE1451.2 和ZigBee 协议的温室智能执行器的研制[J]. 农机化研究,2007(10):144-148. [12]王婷,史铁林,赵江滨. 一种IEEE1451.4 智能传感器数据采集系统的实现[J]. 微计算机信息,2007,27(2-1):131-133. [13]曹祁,杜树旺. IEEE1451.4 在中央空调节能装置中的应用[J]. 浙江工业大学学报,2007,35(5):540-542,552. [14]周宏平. 烟雾机燃烧室——喷管性能及参数的研究[D]. 南京:南京林业大学,1995. [15]DS2431 1024Bit 1Wire EEPROM[EB/OL]. (2009-03-28)[2009-12-01]. http://www.maximic.com/quick_view2.cfm/qv_pk/4272,2004.
PDF(1095048 KB)

Accesses

Citation

Detail

Sections
Recommended
The full text is translated into English by AI, aiming to facilitate reading and comprehension. The core content is subject to the explanation in Chinese.

/