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Design energy harvesting device of UHF TV stations

机译:UHF电视台设计能量收集装置

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摘要

Electromagnetic waves are one of alternative energy sources that can be converted to DC power source. UHF TV transmitter station is one of the electromagnetic wave sources. This is very potential to drive ultra low power devices at nodes of WSN. The Radio Frequency Energy Harvesting (RFEH) system efficiency is the main concerned issue beside voltage multiplication. By using commercial antenna log periodic gain 7 dBi this research focused on matching circuit and power harvester circuit. Designed matching circuit is open circuit single stub tuner built of coaxial cable. While power harvester circuit is combination circuit of Villard and Dickson voltage multipliers (2 stages Villard, 3 stages Dickson). Based on measurement of power receive level from UHF TV Stations in Pekanbaru, the highest result is 4.1 dBm radius 200 m from the station at 655.75 MHz. In laboratory works, by generated signal from SSG (frequency: 655.75 MHz, Tx Power: 4.1 dBm) the output of RFEH system is 2.1 V at no load condition and without single stub tuner. When single stub tuner inserted to the system (d: 7.4 cm and d: 15.1 cm) the output of system is 2.7 V at no load condition. System efficiency without matching circuit is 1.2%. While system efficiency with matching circuit is 0.4%. It caused by matching circuit loss. If SSG generates higher power level (frequency: 655.75 MHz, Tx Power: 13 dBm) the RFEH system output is 4V at no load condition without single stub tuner, efficiency is 3.9%. When single stub tuner inserted to the system, the output is 8.8 V at no load condition, efficiency become 14.6%. However if frequency varied in the system without matching circuit, the efficiency can reach 17.3%.
机译:电磁波是可以转换为DC电源的替代能源之一。 UHF电视发射机站是电磁波源之一。这是驱动WSN节点的超低功耗设备的潜力。射频能量收集(RFEH)系统效率是电压乘法旁边的主要相关问题。通过使用商业天线日志定期增益7 DBI本研究专注于匹配电路和功率收割机电路。设计匹配电路是开放电路单托管调谐器,由同轴电缆构建。虽然功率收割机电路是Virarard和Dickson电压倍增器的组合电路(2个阶段Villard,3级Dickson)。基于Pekanbaru的UHF电视台的功率接收级别的测量,最高结果是从站的4.1 dBm半径200米,在655.75 MHz。在实验室工作中,通过来自SSG的生成信号(频率:655.75MHz,TX Power:4.1 dBm)RFEH系统的输出在没有负载条件下,无负载条件,无需单卷调谐器。当单个存根调谐器插入系统(D:7.4cm和D:15.1cm)时,系统输出为2.7 V无负载条件。无匹配电路的系统效率为1.2%。虽然具有匹配电路的系统效率为0.4%。它由匹配电路损耗引起的。如果SSG产生更高的功率电平(频率:655.75 MHz,TX Power:13 dBm),RFEH系统输出在没有单茬调谐器没有负载条件下的4V,效率为3.9%。当单个短卷调谐器插入系统时,输出为8.8 V,无负载条件,效率变为14.6%。然而,如果在没有匹配电路的系统中变化的频率,则效率可以达到17.3%。

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