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Self-Adaptive Matching Method of Signal and Energy Transmission 被引量:1

Self-Adaptive Matching Method of Signal and Energy Transmission
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摘要 Aimed at the rapid message setting of the passive systems, the efficiency of energy transmission and the characteristics of signal transmission in the message setting are analyzed, which is based on the methods of the circuit analysis and the electromagnetic induction technology. A self-adaptive impedance matching method of signal and energy transmission, which can set the message rapidly and effectively, is put forward. The electromagnetic induct setting system will reach the highest energy transmission efficiency when the equivalent resistance of the second loop is equal to the resistance of the first loop. The greater the ratio of the equivalent resistances is, the higher efficient the signal transmission has. Moreover, the validity of the method is verified by circuit design and tests. Aimed at the rapid message setting of the passive systems, the efficiency of energy transmission and the characteristics of signal transmission in the message setting are analyzed, which is based on the methods of the circuit analysis and the electromagnetic induction technology. A self-adaptive impedance matching method of signal and energy transmission, which can set the message rapidly and effectively, is put forward. The electromagnetic induct setting system will reach the highest energy transmission efficiency when the equivalent resistance of the second loop is equal to the resistance of the first loop. The greater the ratio of the equivalent resistances is, the higher efficient the signal transmission has. Moreover, the validity of the method is verified by circuit design and tests.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2003年第1期55-58,共4页 北京理工大学学报(英文版)
关键词 electromagnetic induction energy and signal transmission impedance matching message setting electromagnetic induction energy and signal transmission impedance matching message setting
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  • 1李杰,学位论文,2001年
  • 2李杰,中国专利 00114831.1,2000年
  • 3郑传军,学位论文,1999年

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