Design of Remote Transmission System for Wireless Heat Metering

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Abstract:

A design scheme is proposed in this paper for heat metering remote transmission system based on the Xbee Pro module. Wireless network technology is used in the scheme. A dynamic monitoring, control and transmission network is composed by the wireless network system and the computer in the monitoring and control center. The real-time data detected from heat metering system can be transmitted and monitored. Xbee Pro module and MSP430FW427 single-chip micro-computer are used in the nodes or terminals of the system. The self-provided functions and modules of the components are taken into sufficient consideration in the design to make the system performance as superior as possible and the system structure as simple as possible. In this way, the transmission system with low power consumption and simple structure is achieved.

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Periodical:

Advanced Materials Research (Volumes 383-390)

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1337-1342

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Online since:

November 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Liu, X. Y., Zhao, Z. X., Li, X. Q., etc. Energy conservation potential analysis of residential building heat metering in severe cold area. Energy Conservation Technology, 2009, 27(06): 492-494.

Google Scholar

[2] Liu, W., Zhao, L. F., He, J. F. Research of reading system for long-distance heat meter based on ZigBee technology. Modern Electronics Technique, 2010, (03): 128-130.

Google Scholar

[3] Mao, L. P., Tang, Y. The intelligent heat energy meter and its remote reading system. Process Automation Instrumentation, 2002, 23(8): 28-30.

Google Scholar

[4] Wang, J. X. Application of ZigBee/IEEE 802. 15. 4 protocol compatible RF module Xbee/Xbee Pro. Electronic Engineer, 2007, 33(3): 24-27.

Google Scholar

[5] Liu, Z. M., Yang, Y., Xu, Y. Q. Key technology and experimental research in wireless mesh networks. ZTE Communications, 2008, 14 (02): 39-43.

Google Scholar

[6] Li, Z. P., Guo, S. J. The application of WMN based RFID in supermarket. Radio Frequency Identification Technologies and Applications, 2009, (4): 43-45.

Google Scholar

[7] Song, W., Fang, X., M. Research and development of wireless mesh network. Journal of the China Railway Society, 2007, 29 (2): 96-102.

Google Scholar

[8] Sun, D. L., Wu, Y., Wu, T., etc. Design, construction and testing of demonstrated wireless mesh network testbed. Information Security and Communications Privacy Design, 2009, (5): 77-79.

Google Scholar

[9] Zheng, X Q. Tutorial of wireless ad hoc network technology. Tsinghua University Press, (2004).

Google Scholar

[10] Wang, X., Ma, R. J., Yang, X. Y. Design of heating measuring systems based on RFID technology. Journal of University of Jinan, 2010, 24 (2): 176-179.

Google Scholar

[11] Huai, L. Design of remote meter reading system and intelligent networked water meter based MSP430 microcontroller. Taiyuan University of Technology, (2006).

Google Scholar

[12] Hu, X. Take ultra low power loss microprocessor MSP430 as core heat meter design. Electronic Component & Device Applications, 2008, 10 (4): 22-25.

Google Scholar

[13] Mei, L. F., Tang, X. M., Jin, H. Heat meter system based on MSP430 and optical fiber communication. Journal of Liaoning University of Technology, 2008, 28 (2): 71-74.

Google Scholar

[14] Fang, S. L., Wang, J. X. Development and application of an Xbee based wireless data collection system. Journal of Mechanical & Electrical Engineering, 2010, 27 (3): 53-55.

Google Scholar