• Laser & Optoelectronics Progress
  • Vol. 57, Issue 21, 210003 (2020)
Ding Jupeng1、*, I Chih-Lin2, Wang Jintao3, and Chen Xifeng1
Author Affiliations
  • 1新疆大学信息科学与工程学院信号检测与处理新疆维吾尔自治区重点实验室, 新疆 乌鲁木齐 830046
  • 2中国移动通信研究院, 北京 100053
  • 3清华大学电子工程系北京信息科学与技术国家研究中心, 北京100084
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    DOI: 10.3788/LOP57.210003 Cite this Article Set citation alerts
    Ding Jupeng, I Chih-Lin, Wang Jintao, Chen Xifeng. Research and Development of Wireless Optical Technology for Smart Power[J]. Laser & Optoelectronics Progress, 2020, 57(21): 210003 Copy Citation Text show less
    Generalized functional block diagram for integrated system of PLC and VLC[8]
    Fig. 1. Generalized functional block diagram for integrated system of PLC and VLC[8]
    Joint channel characteristics of PLC and VLC with 12 PLC taps[8]
    Fig. 2. Joint channel characteristics of PLC and VLC with 12 PLC taps[8]
    Measured frequency response curves of typical integrated system of PLC and VLC[16]
    Fig. 3. Measured frequency response curves of typical integrated system of PLC and VLC[16]
    Block diagram of multicarrier system of integrated PLC and VLC[12]
    Fig. 4. Block diagram of multicarrier system of integrated PLC and VLC[12]
    Block diagram of indoor multiuser downlink of integrated VLC and PLC[11]
    Fig. 5. Block diagram of indoor multiuser downlink of integrated VLC and PLC[11]
    Demonstration setup of PLC & VLC broadcasting system in laboratorial environment[16]
    Fig. 6. Demonstration setup of PLC & VLC broadcasting system in laboratorial environment[16]
    Implementation of duplex communication network combining PLC and VLC. (a) LED source with DF module and PLC-VLC coupler; (b) overview of PLC-VLC access network[14]
    Fig. 7. Implementation of duplex communication network combining PLC and VLC. (a) LED source with DF module and PLC-VLC coupler; (b) overview of PLC-VLC access network[14]
    Display of indoor localization system based on VLC and Android APP[12]. (a) Display of system; (b) receiver (back & front); (c) signal detection in Android APP; (d) map localization in Android APP
    Fig. 8. Display of indoor localization system based on VLC and Android APP[12]. (a) Display of system; (b) receiver (back & front); (c) signal detection in Android APP; (d) map localization in Android APP
    System model of DF relay assisted system combining PLC and VLC[34]
    Fig. 9. System model of DF relay assisted system combining PLC and VLC[34]
    Communication system model combining PLC, VLC, and RF[9]
    Fig. 10. Communication system model combining PLC, VLC, and RF[9]
    Block diagram of wireless optical field monitoring system[41]
    Fig. 11. Block diagram of wireless optical field monitoring system[41]
    Wireless optical monitoring device and its main elements[41]
    Fig. 12. Wireless optical monitoring device and its main elements[41]
    WO device anchored on tower of transmission line, and picture of technician adjusting collimators on top of high voltage tower[41]. (a) WO device anchored on tower of transmission line; (b) picture of technician adjusting collimators on top of high voltage tower
    Fig. 13. WO device anchored on tower of transmission line, and picture of technician adjusting collimators on top of high voltage tower[41]. (a) WO device anchored on tower of transmission line; (b) picture of technician adjusting collimators on top of high voltage tower
    Ding Jupeng, I Chih-Lin, Wang Jintao, Chen Xifeng. Research and Development of Wireless Optical Technology for Smart Power[J]. Laser & Optoelectronics Progress, 2020, 57(21): 210003
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