Title :
The Design of Power Risk Experience System Based on ARM and ZigBee
Author :
Chen Keyu ; Wang Weibo ; Zhou Gang ; Lu Xiaomin ; Cai Weifeng
Author_Institution :
Urban Power Supply Branch Co., Chongqing, China
Abstract :
In order to solve a problem of experience feeling in traditional electrical safety training, the Risk Experience System for electricity is designed based on ARM and ZigBee, this system puts emphasis on negative stimulation and reverse experiential training, and transmits the signal of switch, sensors and the state changes of security devices to ARM control board. It is sample information of electrical equipment and information of the insulated gloves and electric test pen with ZigBee by the way of wireless transmission, and then, this system analyses these information and outputs risk phenomena by physical simulation. If operational errors, the system will trigger a variety of simulated accident devices, resulting in highlight flash, smoke, explosion, and a strong electric shock feeling. By this way, the operator can understand the serious consequence that is caused by wrong operation more intuitively, and enhance the effect of training. It has been proved that the system can complete the function of risking experience successfully.
Keywords :
Zigbee; computer based training; electric shocks; industrial training; power engineering computing; reduced instruction set computing; risk analysis; ARM control board; ZigBee; electric shock; electric test pen; electrical equipment; electrical safety training; highlight flash; insulated gloves information; negative stimulation; power risk experience system; reverse experiential training; security devices; simulated accident devices; wireless transmission; Accidents; Grounding; Safety; Switches; Switching circuits; Training; Zigbee; ARM; CC2430; Risk Experience System; ZigBee; wireless sensor networks;
Conference_Titel :
Instrumentation, Measurement, Computer, Communication and Control (IMCCC), 2013 Third International Conference on
Conference_Location :
Shenyang
DOI :
10.1109/IMCCC.2013.284