[1] | 黄新波. 变电设备在线监测与故障诊断[M]. 北京:中国电力出版社,2010. HUANG Xinbo. Substation-line monitoring and fault diagnosis[M]. Beijing:China Electric Power Press,2010.
|
[2] | 黄新波. 智能变电站原理与应用[M]. 北京:中国电力出版社,2013. HUANG Xinbo. Intelligent substation principles and applications[M]. Beijing: China Electric Power Press,2013.
|
[3] | 张鸿涛,徐连明,张一文,等. 物联网关键技术及系统应用[M]. 北京:机械工业出版社,2012. ZHANG Hongtao,XU Lianming,ZHANG Yiwen,et al.Key technology and system application of internet of things[M]. Beijing:China Machine Press,2012.
|
[4] | 黄新波,贺 霞,王霄宽,等. 智能变电站的关键技术及应用实例[J]. 电力建设,2012,33(10):29-33. HUANG Xinbo,HE Xia,WANG Xiaokuan,et al.Key technology and applied example of intelligent substation[J]. Electric Power Construction,2012,33(10):29-33.
|
[5] | 易海琼,熊小伏. CAN总线技术在智能化开关柜中的应用[J]. 电力自动化设备,2003,23(5):55-57. YI Haiqiong,XIONG Xiaofu. Application of CAN bus technologv in intelligent switchboard system[J]. Electric Power Automation Equipment,2003,23(5):55-57.
|
[6] | 付 文. 基于DSP的高压断路器在线监测装置的研制[D]. 北京:中国石油大学,2009. FU Wen. Research on high-voltage circuit breaker monitoring device based on DSP[D]. Beijing:China Petroleum University,2009.
|
[7] | 刘健华. 高压断路器在线监测与故障诊断系统的研究[D]. 成都:西南交通大学, 2009. LIU Jianhua. Research on high voltage circuit breaker-line monitoring and fault diagnosis system[D]. Chengdu:Southwest Jiaotong University,2009.
|
[8] | KEZUNOVIC M. Automated circuit breaker montioning and analysis[J]. Power Engineering Socety Summer Meeting,2002(1):559-564.
|
[9] | 易 慧,尹项根,郑 浩,等. 基于DSP的高压断路器综合在线监测装置[J]. 高压电器,2007,43(1):35-39. YI Hui,YIN Xianggen,ZHENG Hao,et al. On-line monitoring device for high voltage circuit breaker based on DSP[J]. High Voltage Apparatus,2007,43(1):35-39.
|
[10] | 秦 娜. 氧化锌避雷器在线监测技术的研究[J]. 山西电子技术,2002(2):23-25. QIN Na. MOA online monitoring technology[J]. Shanxi Electronic Technology,2002(2):23-25.
|
[11] | 郑 健,张国庆,田悦新,等. 氧化锌避雷器泄漏电流在线监测技术综述[J]. 继电器,2000,28(9):7-9. ZHENG Jian,ZHANG Guoqing,TIAN Yuexin,et al. Description of on-line detection technique on MOA leakage current[J]. Relay,2000,28(9):7-9.
|
[12] | 张振洪,臧殿红. 氧化锌避雷器在线监测方法的研究[J].高压电器,2009,45(5):126-129. ZHANG Zhenhong,ZANG Dianhong. Study on the on-line monitoring method of metal oxide surge arrester[J]. High Voltage Apparatus,2009,45(5):126-129.
|
[13] | 李虹山,史 阳. 金属氧化锌避雷器MOA的在线监测及故障诊断[J]. 电力建设,2008,29(4):28-32. LI Hongshan,SHI Yang. MOA on-line monitoring and fault diagnosis[J]. Electric Power Construction,2008,29(4):28-32.
|
[14] | 王 宏,黄新波,王红亮,等. 智能变电站金属氧化物避雷器在线监测智能电子设备的设计[J]. 广东电力,2012,25(8):80-85. WANG Hong,HUANG Xinbo,WANG Hongliang,et al.Design of IED for online monitoring on MOA in intelligent substation[J]. Guangdong Electric Power,2012,25(8):80-85.
|
[15] | 昂志敏,金海红,范之国,等. 基于Zigbee的无线传感器网络节点的设计和通信实现[J]. 现代电子技术,2007(10):47-57. ANG Zhimin,JIN Haihong,FAN Zhiguo,et al. Wireless sensor network node design and communication implementation based on Zigbee[J]. Modern Electronic Technology,2007(10):47-57.
|
[16] | 韩丽娜. 基于Zigbee 的矿井人员管理系统设计[D]. 上海:同济大学,2007. HAN Lina. Design on the Zigbee technology-based mine personnel management system[D]. Shanghai:Tongji University,2007.
|
[17] | 吴晓然. 基于MC13192的Zigbee系统设计[J]. 工业控制计算机,2007,20(4):19-20. WU Xiaoran. Design of Zigbee system based on MC13192[J]. Industrial Control Computer,2007,20(4):19-20.
|
[18] | 许一声,顾霓鸿. 高压开关柜触头温度在线监测仪[J]. 高压电器,2005,41(2):139-141. XU Yisheng,GU Nihong. An online temperature monitoring instrument of high voltage switch cabinet contact[J]. High Voltage Apparatus,2005,41(2):139-141.
|
[19] | 黄新波,方寿贤. 用于高压开关柜触头温升监测的Zigbee通信单元: 中国,ZL20120247674.3[P]. 2012-02-22. HUANG Xinbo,FANG Shouxian. Zigbee communication unit which is used for contact temperature monitoring of high voltage switch cabinet: China,ZL20120247674.3[P]. 2012-02-22.
|
[20] | 李中祥,宋建成. 高压隔离开关触头温度在线监测系统的研制[J]. 高压电器,2009,45(2):11-13. LI Zhongxiang,SONG Jiancheng. On-line temperature measurement system for contacts in HV switchgear[J]. High Voltage Apparatus,2009,45(2):11-13.
|
[21] | 孙兴丽,刘曙光. 一种开关柜智能操控装置的设计与实现[J]. 高压电器,2009,45(1):76-80. SUN Xingli,LIU Shuguang. Design and implementation of a intelligent manipulation device for switchboard[J]. High Voltage Apparatus,2009,45(1):76-80.
|