This paper introduces a sliding mode control (SMC)-based equivalent control method to a novel high output gain Ćuk converter. An additional inductor and capacitor improves the efficiency and output gain of the classical Ćuk converter. Classical proportional integral (PI) controllers are widely used in direct current to direct current (DC-DC) converters. However, it is a very challenging task to design a single PI controller operating in different loads and disturbances. An SMC-based equivalent control method which achieves a robust operation in a wide operation range is also proposed. Switching frequency is kept constant in appropriate intervals at different loading and disturbance conditions by implementing a dynamic hysteresis control met...
This paper presents the design of a hysteresis band controller to regulate the switching frequency i...
This paper explores brief idea of the Design and simulation of DC/DC Boost Converter using Pulse Wid...
This paper presents a sliding-mode control design of a boost–buck switching converter for a voltage ...
This paper introduces a sliding mode control (SMC)-based equivalent control method to a novel high o...
Abstract – This document gives you a brief idea of the Design and simulation of DC/DC Boost converte...
xxvii, 180 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P EIE 2005 TanDespite being...
An essential component in modern DC systems is the bus-forming boost converter. However, voltage reg...
This article presents a design, output voltage and inductor current regulations of the negative outp...
This paper presents a comparative study between two control strategies based on the sliding mode con...
This paper presents a sliding mode control (SMC) approach to a novel high output gain SEPIC converte...
This article presents a design, output voltage and inductor current regulations of the negative outp...
AbstractThis article presents a design, output voltage and inductor current regulations of the negat...
This paper presents a sliding mode control (SMC) approach to a novel high output gain SEPIC converte...
© 2015 IEEE. In this paper a simple sliding mode controller based on the averaging state space model...
This paper presents the design of a hysteresis band controller to regulate the switching frequency i...
This paper presents the design of a hysteresis band controller to regulate the switching frequency i...
This paper explores brief idea of the Design and simulation of DC/DC Boost Converter using Pulse Wid...
This paper presents a sliding-mode control design of a boost–buck switching converter for a voltage ...
This paper introduces a sliding mode control (SMC)-based equivalent control method to a novel high o...
Abstract – This document gives you a brief idea of the Design and simulation of DC/DC Boost converte...
xxvii, 180 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P EIE 2005 TanDespite being...
An essential component in modern DC systems is the bus-forming boost converter. However, voltage reg...
This article presents a design, output voltage and inductor current regulations of the negative outp...
This paper presents a comparative study between two control strategies based on the sliding mode con...
This paper presents a sliding mode control (SMC) approach to a novel high output gain SEPIC converte...
This article presents a design, output voltage and inductor current regulations of the negative outp...
AbstractThis article presents a design, output voltage and inductor current regulations of the negat...
This paper presents a sliding mode control (SMC) approach to a novel high output gain SEPIC converte...
© 2015 IEEE. In this paper a simple sliding mode controller based on the averaging state space model...
This paper presents the design of a hysteresis band controller to regulate the switching frequency i...
This paper presents the design of a hysteresis band controller to regulate the switching frequency i...
This paper explores brief idea of the Design and simulation of DC/DC Boost Converter using Pulse Wid...
This paper presents a sliding-mode control design of a boost–buck switching converter for a voltage ...