Title :
Design of auto air pressure balance system for fire control and numerical simulation of pressure balance effect
Author :
Hongqing Zhu ; Feng Li ; Zhengyu Zhang ; Dongnan Lv ; Junwei Hao
Author_Institution :
State Key Lab. of Coal Resources & Safety Min., China Univ. of Min. & Technol., Beijing, China
Abstract :
According to the principle and characteristics of air pressure balance for fire control and the relation of pressure change and air leakage in pressure balance area, pressure regulation redundancy is determined and applied. And based on the site actual demand, this paper introduces the hardware overall design of auto air pressure balance system for fire control, compilation of configuration monitoring software and PLC instruction, communication protocol selection and hardware connection mode. In the system, industrial computer is used as host computer, adopting dual redundancy control for higher reliability. Develop configuration monitoring software based on Force Control 6.0. In branch station, PLC is applied as control core, communicating with host computer through CAN field-bus, and receives instruction to control field devices. This paper presents numerical simulation and effect analysis of pressure balance. Auto air pressure balance system for fire control can be widely applied in mining under fire area, fire-zone open and coal spontaneous combustion prevention.
Keywords :
control engineering computing; controller area networks; field buses; fires; pressure control; programmable controllers; reliability; CAN fieldbus; Force Control 6.0; PLC instruction; air leakage; auto air pressure balance system; coal spontaneous combustion prevention; communication protocol selection; configuration monitoring software; fire control; hardware connection mode; hardware overall design; numerical simulation; pressure balance effect; pressure change; pressure regulation redundancy; Belts; Coal; Fires; Monitoring; Regulators; Software; Auto air pressure balance; CAN field-bus; Configuration monitoring software; Numerical simulation; Pressure regulation redundancy;
Conference_Titel :
Fuzzy Systems and Knowledge Discovery (FSKD), 2011 Eighth International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-61284-180-9
DOI :
10.1109/FSKD.2011.6019963