[1]
ZHANG Jun-min, WANG Guan-shao, ZHANG Li-na, LI Guang-da, Secondary Control Technology of Integrated GIS, High Voltage Apparatus, 44(4), Aug. 2008, 362~365, 373.
Google Scholar
[2]
V.C. Gungor ,F.C. Lambert, A survey on communication networks for electric system automation , Computer Networks, 50( 7), May 2006, 877~897.
DOI: 10.1016/j.comnet.2006.01.005
Google Scholar
[3]
Mahmood Qureshi, Ali Raza. etc, A Survey of Communication Network Paradigms for Substation Automation, Power Line Communications and Its Applications, 2008. ISPLC2008. IEEE International Symposium on, April 2008, 310~315.
DOI: 10.1109/isplc.2008.4510445
Google Scholar
[4]
Kazem Sohraby, Daniel Minoli, Taieb Znati, Wireless Sensor Networks: Technology, Protocols, and Applications, ISBN 978-0-471-74300-2, (2007).
DOI: 10.1002/047011276x
Google Scholar
[5]
Gungor, V. C., Lu, B., Hancke, G. P., Opportunities and Challenges of Wireless Sensor Networks in Smart Grid, 2010, vol. 57, pp.3557-3564.
DOI: 10.1109/tie.2009.2039455
Google Scholar
[6]
Liu, Z. X., Huang, Y. L., Yao, L. Z., Gong, Y. J., Han, M., Zeng, R., Li, Z. Q., Experiment on the application of Bluetooth in vacuum switch cabinet, 2008, Third International Conference on Electric Utility Deregulation and Restructuring and Power Technologies, Vols 1-6, p.1982-(1986).
DOI: 10.1109/drpt.2008.4523732
Google Scholar
[7]
http: /www. isa. org/source/ISA100_Overview_Oct_2008. pdf.
Google Scholar
[8]
http: /www. pserc. org/cgipserc/getbig/publicatio/reports/2002report/kezunovic_wirelesssub_part_i_finalreport. pdf.
Google Scholar
[9]
Z. Jianliang, M. J. Lee, and M. Anshel, Toward Secure Low Rate Wireless Personal Area Networks, Mobile Computing, IEEE Transactions on vol. 5, pp.1361-1373, (2006).
DOI: 10.1109/tmc.2006.157
Google Scholar
[10]
W. Andrew, Commercial Applications of Wireless Sensor Networks Using ZigBee, Communications Magazine, IEEE, vol. 45, pp.70-77, (2007).
DOI: 10.1109/mcom.2007.343615
Google Scholar
[11]
W. Kluge, F. Poegel, H. Roller, M. Lange, T. Ferchland, L. Dathe, and D. Eggert, A Fully Integrated 2. 4GHz IEEE 802. 15. 4-Compliant Transceiver for ZigBee™ Applications, Solid-State Circuits, IEEE Journal of, vol. 41, pp.2767-2775, (2006).
DOI: 10.1109/jssc.2006.884802
Google Scholar
[12]
LIU Heping, ZHANG Gaoqun , Necessity and Feasibility Studies of ZigBee Application Technology in Large and Medium-sized Power Plant, MODERN ELECTRONICS TECHNIQUE , 31(8) 2008, 190~194.
Google Scholar
[13]
Qingshan Shan; Glover, I.A.; Moore, P.J.; Portugues, I.; Watson, R.J.; Rutherford, R. Performance of Zigbee in Electricity Supply Substations, Wireless Communications, Networking and Mobile Computing, 21(25) Sept. 2007 3871~3874.
DOI: 10.1109/wicom.2007.957
Google Scholar
[14]
Qingshan Shan, I A Glover, P J Moore, I E Portugues, M Judd, R Rutherford, R J Watson, Impulsive Noise Environment of High Voltage Electricity Transmission Substations and its Impact of the Performance of ZigBee.
DOI: 10.1109/wicom.2007.957
Google Scholar
[15]
LI Qing-quan, LI Yan-ming, etc The Transient Electromagnetic Fields Caused by the Operation of Disconnector in Substation and Protection High Voltage Engineering, 27(4), Aug. 2001, 35~37.
Google Scholar
[16]
Boggs S A, Chu F Y. Disconnect switch induced transient and trapped charge in gas-insulated substation. IEEE Trans on PAS, 1982, 101(10): 3593.
DOI: 10.1109/tpas.1982.317032
Google Scholar
[17]
Russell B Don, Harvey S M, Nilsson S L. Substation electromagnetic interference, Part I Characterization and description of the transient EMI problem. IEEE Trans on PAS, 1984, 103(7): 1863.
DOI: 10.1109/tpas.1984.318650
Google Scholar
[18]
Wiggins C M, Wright S E. Switching transient fields in substations. IEEE Trans on P D, 1991, 6(2): 591.
Google Scholar
[19]
HE Jing-liang·Power system electromagnetic compatibility·Beijing:, (1993).
Google Scholar
[20]
I. Howitt and J. A. Gutierrez, IEEE 802. 15. 4 low rate – wireless personal area network coexistence issues, in Wireless Communications and Networking, 2003. WCNC2003. 2003 IEEE 2003, pp.1481-1486.
DOI: 10.1109/wcnc.2003.1200605
Google Scholar
[21]
M. Petrova, J. Riihijarvi, P. Mahonen, and S. Labella, Performance Study of IEEE 802. 15. 4 Using Measurements and Simulations, (2006).
DOI: 10.1109/wcnc.2006.1683512
Google Scholar
[22]
D. G. Yoon, S. Y. Shin, W. H. Kwon, and H. S. Park, Packet Error Rate Analysis of IEEE 802. 11b under IEEE 802. 15. 4 Interference, in Vehicular Technology Conference, 2006. VTC 2006-Spring. IEEE 63rd, 2006, pp.1186-1190.
DOI: 10.1109/vetecs.2006.1683022
Google Scholar
[23]
ftp: /ftp. bocon. com. cn/Jennic/BW1000/ BW1000P B. pdf.
Google Scholar
[24]
http: /library. abb. com/global/scot/scot258. nsf/veritydisplay/01fcf64ac951d66bc1257590004db574/$File/Xa4eDEABB_1456_09_E_RTU560_211. pdf.
Google Scholar
[25]
Liang Xiao Bing , The Transient Electromagnetic Interference Caused by Switch Operations at Substation, GUANGXI ELECTRIC POWER TECHNOLOGY , 22(1) 1999, 7~10.
Google Scholar
[26]
Edward N. Skomal, Man-Made Radio Noise, Van Nostrand Reinhold Company, ISBN 0-442-27648-6, (1978).
Google Scholar