Abstract This paper presents a robust passivity‐based control (RPBC) strategy for half‐wave zero‐voltage switching quasi‐resonant (HW‐ZVS‐QR) buck and boost type converters. The proposed controller is based on energy shaping and damping injection. Theoretical analysis shows that the resulted closed‐loop HW‐ZVS‐QRs are globally asymptotically stabilised even if the physical constraint on the magnitude of the control signal is taken into account. Also, an integral function of the output error is added into the feedback path of the conventional passivity‐based control design. As a result, such controller not only offers a global asymptotic stable operation but also provides strong robustness to a wide range of parameter mismatch. It is also de...
This paper discusses the extension of the passivity based control approach to DC-DC converters opera...
We present a full review of PID passivity-based controllers (PBC) applied to power electronic conver...
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: H. F. HoRe...
Abstract Here, a general state‐space average model of the half‐wave zero‐voltage switching quasi‐res...
Abstract In this paper, a new robust control strategy is proposed to regulate the output voltage of ...
Nonlinear passivity-based control (PBC) algorithms for power converters have proved to be an interes...
poster abstractBuck-boost converters are nonlinear systems and can either step-up or step-down the o...
We develop in this paper an adaptive passivity-based controller for output voltage regulation of DC–...
International audienceThis paper addresses the problem of regulating the output voltage of a DC-DC b...
International audienceThe negative impedance caused by constant power load (CPL) may lead to the ins...
Nonlinear Passivity-based control (PBC) algorithms for power converters have proven to be an interes...
We develop in this paper an adaptive passivity-based controller for output voltage regulation of DC-...
Abstract- Buck-boost converters are nonlinear, non-minimum phase systems with respect to their outpu...
Nonlinear Passivity-based control (PBC) algorithms for power converters have proven to be an interes...
International audienceIntroduction. This paper presents a robust nonlinear control of the DC-DC boos...
This paper discusses the extension of the passivity based control approach to DC-DC converters opera...
We present a full review of PID passivity-based controllers (PBC) applied to power electronic conver...
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: H. F. HoRe...
Abstract Here, a general state‐space average model of the half‐wave zero‐voltage switching quasi‐res...
Abstract In this paper, a new robust control strategy is proposed to regulate the output voltage of ...
Nonlinear passivity-based control (PBC) algorithms for power converters have proved to be an interes...
poster abstractBuck-boost converters are nonlinear systems and can either step-up or step-down the o...
We develop in this paper an adaptive passivity-based controller for output voltage regulation of DC–...
International audienceThis paper addresses the problem of regulating the output voltage of a DC-DC b...
International audienceThe negative impedance caused by constant power load (CPL) may lead to the ins...
Nonlinear Passivity-based control (PBC) algorithms for power converters have proven to be an interes...
We develop in this paper an adaptive passivity-based controller for output voltage regulation of DC-...
Abstract- Buck-boost converters are nonlinear, non-minimum phase systems with respect to their outpu...
Nonlinear Passivity-based control (PBC) algorithms for power converters have proven to be an interes...
International audienceIntroduction. This paper presents a robust nonlinear control of the DC-DC boos...
This paper discusses the extension of the passivity based control approach to DC-DC converters opera...
We present a full review of PID passivity-based controllers (PBC) applied to power electronic conver...
Author name used in this publication: K. W. E. ChengAuthor name used in this publication: H. F. HoRe...