TY - GEN
T1 - Nonreciprocal Filtering Power Divider Using Mixed Static and Time-Modulated Resonators
T2 - 53rd European Microwave Conference, EuMC 2023
AU - Chaudhary, Girdhari
AU - Pech, Phanam
AU - Saron, Samdy
AU - Psychogiou, Dimitra
AU - Jeong, Yongchae
N1 - Publisher Copyright:
© 2023 European Microwave Association (EuMA).
PY - 2023
Y1 - 2023
N2 - This paper presents detailed design methodology and the experimental validation of a nonreciprocal power divider (|S_21|≠|S_12| and |S_31|≠|S_13|) using mixed static and time-modulated resonators. The nonreciprocal response is achieved by modulating its constituent resonators with a sinusoidal signal with progressive phase shift. The mixed static and time-modulated resonators are used to achieve a wider bandwidth for the reverse isolation (|S_12| and |S_13|) while using fewer time-modulated resonators. The analytical spectral S-parameters of the nonreciprocal power divider have been derived to simplify the design method. General empirical design equations for the modulation parameters are derived from numerical simulations, which enable the proposed nonreciprocal power divider with the desired specifications. For experimental validation, a nonreciprocal filtering power divider with an equal power division ratio was designed and fabricated at center frequency of 1.45 GHz. The measured results confirmed the accuracy of the analytical design equations.
AB - This paper presents detailed design methodology and the experimental validation of a nonreciprocal power divider (|S_21|≠|S_12| and |S_31|≠|S_13|) using mixed static and time-modulated resonators. The nonreciprocal response is achieved by modulating its constituent resonators with a sinusoidal signal with progressive phase shift. The mixed static and time-modulated resonators are used to achieve a wider bandwidth for the reverse isolation (|S_12| and |S_13|) while using fewer time-modulated resonators. The analytical spectral S-parameters of the nonreciprocal power divider have been derived to simplify the design method. General empirical design equations for the modulation parameters are derived from numerical simulations, which enable the proposed nonreciprocal power divider with the desired specifications. For experimental validation, a nonreciprocal filtering power divider with an equal power division ratio was designed and fabricated at center frequency of 1.45 GHz. The measured results confirmed the accuracy of the analytical design equations.
KW - Analytical spectral S-parameters
KW - mixed static and time-modulated resonators
KW - nonreciprocal filtering power divider
KW - varactor diode
UR - https://www.scopus.com/pages/publications/85177604409
U2 - 10.23919/EuMC58039.2023.10290566
DO - 10.23919/EuMC58039.2023.10290566
M3 - Conference paper
AN - SCOPUS:85177604409
T3 - 2023 53rd European Microwave Conference, EuMC 2023
SP - 90
EP - 93
BT - 2023 53rd European Microwave Conference, EuMC 2023
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 19 September 2023 through 21 September 2023
ER -