Equipment Design for Classroom Electrical Monitor Based on Power Line Carrier Communication

Article Preview

Abstract:

In order to monitor the classroom electrical power usage and achieve low-carbon energy. A kind of monitor equipment was designed by using STM32F103RBT6 as main controller and BWP09 power carrier communication module as the carrier communication media. Using this device, all of electrical appliances in classrooms such as fan, light and air conditioning were under remote centralized control. The control system can turn on or turn off devices and monitor working state of each electric appliance. When electric appliance break down, the system will alarm and send data back to the control room. Waste of electric of energy and burden of classroom administrators were reduced by using this device. Experimental results suggested that the classroom electrical appliance monitor work was stable and reliable, having practical popularized value.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

244-248

Citation:

Online since:

May 2014

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Sun Ping. Ma Weihua, Design and realization of appliances control system based on power line communication, Microcomputer & Its Applications, 2012, 1.

Google Scholar

[2] Fu Wei, Research on the 6LoWPAN Home Appliance Control System for Smart Home, Process Automation Instrumentation, 2013, 12.

Google Scholar

[3] Guan Guang-fu, On environmental equipment system of computer room and its design analysis, Electrotechnical Journal, 2004, 2.

Google Scholar

[4] Du Jun. Qiu Rui_xue, The Application of the PL2101 in the Controlling system of Street Lamps, International Electronic Elements, 2003, 9.

Google Scholar

[5] Cai Limin, The Design of the Information Appliance's remote controller based on ARM, Microcomputer Information, 2006, 32.

Google Scholar

[6] Wei Chunjuan, Application and Development of Low Voltage Power Line Communication, Low Voltage Apparatus, 2011, 9.

Google Scholar

[7] CaiWei. Le Jian, Overview of the channel modeling methods of power-line carrier communication, Power System Protection and Control, 2012, 10.

Google Scholar

[8] Luo Han-wu. Cai Wei, Analysis of influence factors on power-line communication channel characteristics, Power System Protection and Control, 2013, 7.

Google Scholar

[9] BWP09Data Sheet, http: /www. bitwell. cn.

Google Scholar

[10] BWP09 User's manual, http: /www. bitwell. cn.

Google Scholar

[11] STM32F103 Data Sheet, http: /www. st. com.

Google Scholar

[12] STM32F103 User's manual, http: /www. st. com.

Google Scholar