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References

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2 
Song C., Huang Y., Carter P., Zhou J., Yuan S., Xu Q., Kod M., July. 2016, A novel six-band dual CP rectenna using improved impedance matching technique for ambient RF energy harvesting, IEEE Trans. on antennas and propagation, Vol. 64, No. 7, pp. 3160-3171DOI
3 
Sun H., Guo Y., He M., Zhong Z., Dec. 2013, A dual-band rectenna using broadband Yagi antenna array for ambient RF power harvesting, IEEE antennas and wireless propagation, Vol. 12, pp. 918-921DOI
4 
Kotani K., Ito T., Nov. 2007, High efficiency CMOS rectifier circuit with self-Vth-cancellation and power regulation functions for UHF RFIDs, in Proc. IEEE ASSCC, pp. 119-122DOI
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Sasaki A., Kotani K., Ito T., Nov. 2008, Differential-drive CMOS rectifier for UHF RFIDs with 66% PCE at-12 dBm input, in Proc. IEEE ASSCC, pp. 105-108DOI
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Yi J., Ki W. H., Tsui C. Y., Jan. 2007, Analysis and design strategy of UHF micro-power CMOS rectifiers for micro- sensor and RFID applications, IEEE Trans. Circuits Syst. I, Vol. 54, No. 1, pp. 153-166DOI
7 
Moghaddam A., Chuah J., Ramiah H., Ahnadian J., Mak P. I., Martins R., April. 2017, A 73.9%-efficiency CMOS rectifier using a lower DC feeding (LDCF) self-body-biasing technique for far-field RF energy-harvesting systems, IEEE Trans. Circuits Syst. I, Reg. Papers, Vol. 64, No. 4, pp. 992-1002DOI