This work derives the closed-loop input and output impedances of three major types of DC-DC converters (Buck, Boost, and Buck-Boost) operating in voltage or current mode control. First, it introduces the small-signal converter model employed to derive the input and output impedances. Next, it reviews open-loop impedances for use in simplifying the expressions developed for closed-loop impedances. It then derives the closed-loop impedances by closing the voltage or current loop (depending on control method) in the converter model. Finally, The validity of the impedances thus derived is verified by simulation
The closed-loop (CL) impedances of each connected microgrid device (generator, sto rage or load) are...
This paper provides a simple analytical model for the closed-loop output impedance of a direct-duty-...
We explore various types of DC-to-DC converter and its characteristics of Switch Mode Power Supply (...
To obtain high performance control of a dc-dc converter, a good model of the converter is needed. It...
To obtain high performance control of a dc-dc converter, a good model of the converter is needed. Th...
The output characteristics of switched-mode dc-dc buck power converter are discussed. The shape of o...
Characteristic frequencies corresponding to poles and zeros of small-signal control-to-output transf...
© 2018 IEEE. This paper introduces a closed-loop small-signal model of current-mode controlled A-sou...
The main goal of this study was to derive small-signal models of the input characteristics of buck, ...
Small-signal input characteristics of BUCK and BOOST DC-DC power converters in continuous conduction...
Constant power load converter will introduce unstable factor to the cascaded system. Exchanging the ...
This work analyzes the stability of a cascaded converter system comprised of two dc-dc converters op...
All the interconnected regulated systems are prone to impedance-based interactions making them sensi...
In DC-DC Buck converters with average current mode control, the current loop compensator provides ad...
This paper shows DC and small-signal circuit models for the PWM DC to DC buck, boost and back/ boost...
The closed-loop (CL) impedances of each connected microgrid device (generator, sto rage or load) are...
This paper provides a simple analytical model for the closed-loop output impedance of a direct-duty-...
We explore various types of DC-to-DC converter and its characteristics of Switch Mode Power Supply (...
To obtain high performance control of a dc-dc converter, a good model of the converter is needed. It...
To obtain high performance control of a dc-dc converter, a good model of the converter is needed. Th...
The output characteristics of switched-mode dc-dc buck power converter are discussed. The shape of o...
Characteristic frequencies corresponding to poles and zeros of small-signal control-to-output transf...
© 2018 IEEE. This paper introduces a closed-loop small-signal model of current-mode controlled A-sou...
The main goal of this study was to derive small-signal models of the input characteristics of buck, ...
Small-signal input characteristics of BUCK and BOOST DC-DC power converters in continuous conduction...
Constant power load converter will introduce unstable factor to the cascaded system. Exchanging the ...
This work analyzes the stability of a cascaded converter system comprised of two dc-dc converters op...
All the interconnected regulated systems are prone to impedance-based interactions making them sensi...
In DC-DC Buck converters with average current mode control, the current loop compensator provides ad...
This paper shows DC and small-signal circuit models for the PWM DC to DC buck, boost and back/ boost...
The closed-loop (CL) impedances of each connected microgrid device (generator, sto rage or load) are...
This paper provides a simple analytical model for the closed-loop output impedance of a direct-duty-...
We explore various types of DC-to-DC converter and its characteristics of Switch Mode Power Supply (...