We propose a novel lumped time-delay compensation scheme for all-optical analog-to-digital conversion based on soliton self-frequency shift and optical interconnection techniques. A linearly chirped fiber Bragg gratin...We propose a novel lumped time-delay compensation scheme for all-optical analog-to-digital conversion based on soliton self-frequency shift and optical interconnection techniques. A linearly chirped fiber Bragg grating is optimally designed and used to compensate for the entire time-delays of the quantized pulses precisely. Simulation results show that the compensated coding pulses are well synchronized with a time difference less than 3.3 ps, which can support a maximum sampling rate of 151.52 GSa/s. The proposed scheme can efficiently reduce the structure complexity and cost of all-optical analog-to-digital conversion compared to the previous schemes with multiple optical time-delay lines.展开更多
针对多中继无线电能传输(wireless power transfer,WPT)系统传输特性不明确,一体化中继线圈难以构建等问题,文中研究一种基于平面线圈的自补偿多中继WPT系统,可应用于高压输电系统数据采集模块供电等领域,能够有效提升传输效率。首先分...针对多中继无线电能传输(wireless power transfer,WPT)系统传输特性不明确,一体化中继线圈难以构建等问题,文中研究一种基于平面线圈的自补偿多中继WPT系统,可应用于高压输电系统数据采集模块供电等领域,能够有效提升传输效率。首先分析不同中继线圈个数条件下多中继系统在串联及其他补偿条件下的恒压或恒流输出特性;其次,阐明印刷电路板(printed circuit board,PCB)自补偿线圈中电感、电容参数设计方法;以优化线圈电阻为目标,提出一种设计PCB自补偿线圈的方法;最后,搭建一套基于PCB自补偿线圈、工作频率为1.67MHz、总传输距离为1.1m的多中继WPT系统实验平台。实验结果表明,所提方法能够有效改善多中继WPT系统性能。展开更多
基金Project supported by the National Basic Research Program,China(Grant Nos.2010CB327605 and 2010CB328300)the National High-Technology Research and Development Program of China(Grant No.2013AA031501)+7 种基金the National Natural Science Foundation of China(Grant No.61307109)the Specialized Research Fund for the Doctoral Program of Higher Education of China(Grant No.20120005120021)the Fundamental Research Funds for the Central Universities,China(Grant No.2013RC1202)the Program for New Century Excellent Talents in University,China(Grant No.NECT-11-0596)the Beijing Nova Program,China(Grant No.2011066)the Fund of State Key Laboratory of Information Photonics and Optical Communications(Beijing University of Posts and Telecommunications) Chinathe China Postdoctoral Science Foundation(Grant No.2012M511826)the Postdoctoral Science Foundation of Guangdong Province,China(Grant No.244331)
文摘We propose a novel lumped time-delay compensation scheme for all-optical analog-to-digital conversion based on soliton self-frequency shift and optical interconnection techniques. A linearly chirped fiber Bragg grating is optimally designed and used to compensate for the entire time-delays of the quantized pulses precisely. Simulation results show that the compensated coding pulses are well synchronized with a time difference less than 3.3 ps, which can support a maximum sampling rate of 151.52 GSa/s. The proposed scheme can efficiently reduce the structure complexity and cost of all-optical analog-to-digital conversion compared to the previous schemes with multiple optical time-delay lines.
文摘针对多中继无线电能传输(wireless power transfer,WPT)系统传输特性不明确,一体化中继线圈难以构建等问题,文中研究一种基于平面线圈的自补偿多中继WPT系统,可应用于高压输电系统数据采集模块供电等领域,能够有效提升传输效率。首先分析不同中继线圈个数条件下多中继系统在串联及其他补偿条件下的恒压或恒流输出特性;其次,阐明印刷电路板(printed circuit board,PCB)自补偿线圈中电感、电容参数设计方法;以优化线圈电阻为目标,提出一种设计PCB自补偿线圈的方法;最后,搭建一套基于PCB自补偿线圈、工作频率为1.67MHz、总传输距离为1.1m的多中继WPT系统实验平台。实验结果表明,所提方法能够有效改善多中继WPT系统性能。