Research on Variable-Frequency-Point Variable-Bandwidth Wireless Broadband Radio Frequency Chip and its Application in the Smart Grid

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With the development of the smart grid, residential electricity services have a higher bandwidth and frequency requirement to the power system communication , the existing power 230MHz narrow-band data transmission communication has been unable to meet the needs of the two-way interaction between the users and the smart grid. In terms of current communication technology in the power system, this paper introduces a wireless broadband radio frequency chip ,which supports 100MHz to 1.2GHz frequency range, and 5KHz to 2MHz tunable bandwidth.With the chip embedded in intelligent electricity interactive terminals, distribution monitoring terminals and other devices, it can achieve flexible and intelligent electricity services. This paper describes the architecture of the RF chip,and gives key technology solutions such as broadband matching, adjustable IF bandwidth of the channel, sums up the advantages of the chip,presents the application in the smart grid. The analysis finds that the chip has a variety of charateristics such as high integration, good redundancy, versatility, flexibility and so on, and can satisfy the growing application needs of power speacial network,and has an extremely promising market .

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Periodical:

Advanced Materials Research (Volumes 347-353)

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3107-3115

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October 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Santacana E.. Rackliffe G., Le Tang, Xiaoming Feng. "Getting Smart". Power and Energy Magazine, 8(2),2010.

DOI: 10.1109/mpe.2009.935557

Google Scholar

[2] Hamilton B., Summy M.. "Benefits of the Smart Grid". Power and Energy Magazine,9(1).2010.

Google Scholar

[3] Abe R., Taoka H., McQuilkin D.. "Digital Grid: Communicative Electrical Grids of the Future". IEEE Transactions on Smart Grid, 2(2),2011.

DOI: 10.1109/tsg.2011.2132744

Google Scholar

[4] Rahimi F., Ipakchi A.. "Demand Response as a Market Resource Under the Smart Grid Paradigm". IEEE Transactions on Smart Grid, 1(1).2010.

DOI: 10.1109/tsg.2010.2045906

Google Scholar

[5] Gharavi H., Bin Hu. "The Role of Simulators for Smart Grid Development". IEEE Transactions on Smart Grid,1(2).2010.

Google Scholar

[6] Zhifang Wang, Scaglione A., Thomas R.J.. "Generating Statistically Correct Random Topologies for Testing Smart Grid Communication and Control Networks". 1(1).2010.

DOI: 10.1109/tsg.2010.2044814

Google Scholar

[7] Gungor V.C., Bin Lu, Hancke G.P.. " Opportunities and Challenges of Wireless Sensor Networks in Smart Grid".57(10).2009.

Google Scholar

[8] Lasseter R.H.. " Smart Distribution: Coupled Microgrids". Proceedings of the IEEE,99(6).2011.

Google Scholar

[9] ZHOU Zi-guan,BAI Xiao-min,LI Wen-feng,LI Zai-hua, XU Jing, LI Xiao-jun . " A Novel Smart On-line Fault Diagnosis and Analysis Approach of Power Grid Based on WAMS". Proceedings of the CSEE,29(13).2009(in Chinese).

Google Scholar

[10] ZHOU Zi-guan,BAI Xiao-min,LI Zai-hua,XU Jing,LI Xiao-jun,LI Hui-ling . "Novel Fault Diagnosis Approach of Smart Transmission Grid Based on Knowledge Grid Technology". Proceedings of the CSEE,30(4),2010(in Chinese).

Google Scholar

[11] LI Zai-hua, BAI Xiao-min, ZHOU Zi-guan, XU Jing, LI Xiao-jun, ZHANG Lin, MENG Jun-xia, ZHU Ning-hui . "Method of Power Grid Fault Diagnosis Based on Feature Mining". Proceedings of the CSEE,30(10),2010(in Chinese).

Google Scholar

[12] Yu Yixin, Luan Wenpeng. Smart grid. Power System and Clean Energy, 2009, 25(1):7-11(in Chinese).

Google Scholar

[13] Chen Shuyong, Song Shufang, Li Lanxin, et al. Survey on smart grid technology. Power System Technology, 2009, 33(8):1-7(in Chinese).

Google Scholar

[14] ZHANG Wen-liang,LIU Zhuang-zhi,WANG Ming-jun,YANG Xu-sheng. "Research Status and Development Trend of Smart Grid". Power System Technology, 33(0).2009(in Chinese).

Google Scholar

[15] HAN Feng,YIN Ming,LI Jun,ZHANG Yi-bin,SUN Qiang. "Discussions on Related Issues of Smart Grid Development in China". Power System Technology, 33(15).2009(in Chinese).

Google Scholar

[16] Gharavi H., Bin Hu. "Multigate Communication Network for Smart Grid". Proceedings of the IEEE,99(6).2011.

Google Scholar

[17] YIN Shu-gang,ZHANG Yu,BAI Ke-ming. "A Smart Power Utilization System Based on Real-Time Electricity Prices". Power System Technology, 33(19).2009.

Google Scholar

[18] Bouhouras A.S., Andreou G.T., Labridis D.P., Bakirtzis A.G.. "Selective Automation Upgrade in Distribution Networks Towards a Smarter Grid".IEEE Transactions on Smart Grid,1(3). 2010.

DOI: 10.1109/tsg.2010.2080294

Google Scholar

[19] Gungor V.C., Bin Lu, Hancke G.P.. "Opportunities and Challenges of Wireless Sensor Networks in Smart Grid" IEEE Transactions on Industrial Electronics,57(10).2010.

DOI: 10.1109/tie.2009.2039455

Google Scholar