A comprehensive review on wireless capacitive power transfer technology: Fundamentals and applications
Capacitive power transfer (CPT) technology is becoming increasingly popular in various
application areas. Due to its limitations, such as low frequency, low coupling capacitance …
application areas. Due to its limitations, such as low frequency, low coupling capacitance …
Offline soft-switched LED driver based on an integrated bridgeless boost–asymmetrical half-bridge converter
PS Almeida, HAC Braga… - IEEE Transactions …, 2014 - ieeexplore.ieee.org
This paper proposes an offline single-stage light-emitting diode (LED) driver based on a
novel approach to reduce low-frequency ripple in LED arrays supplied from mains, while …
novel approach to reduce low-frequency ripple in LED arrays supplied from mains, while …
Quasi-resonant LED driver with capacitive isolation and high PF
D Shmilovitz, A Abramovitz… - IEEE Journal of Emerging …, 2015 - ieeexplore.ieee.org
A simple, efficient, and low-cost quasi-resonant LED driver is presented. The proposed
driver relies on capacitive safety isolation barrier and eliminates the need for a bulky …
driver relies on capacitive safety isolation barrier and eliminates the need for a bulky …
A resonant LED driver with capacitive power transfer
D Shmilovitz, S Ozeri, MM Ehsani - 2014 IEEE Applied Power …, 2014 - ieeexplore.ieee.org
A quasi resonant topology suitable for LED drivers, featuring power factor correction and
dimming in a single stage is presented. It contains a single active switch, and operates in …
dimming in a single stage is presented. It contains a single active switch, and operates in …
Novel high-power nonresonant multichannel LED driver
This paper reports a multichannel high-power light-emitting diode (LED) driver employing a
single-stage dc-dc power conversion and control technique with dimming capability. A half …
single-stage dc-dc power conversion and control technique with dimming capability. A half …
The study of harmonic reduction in Light Emitting Diode (LED) roadway lighting system
S Yoomak, A Ngaopitakkul - 2016 17th International Scientific …, 2016 - ieeexplore.ieee.org
Since electrical energy is essential in human life, it is necessary to find out a way to reduce
its consumption. In the past, in Thailand, they had to provide much energy to roadway …
its consumption. In the past, in Thailand, they had to provide much energy to roadway …
Off-line soft-switched LED driver based on an integrated bridgeless boost-half-bridge converter
PS Almeida, ALC Mello, HAC Braga… - 2013 IEEE Industry …, 2013 - ieeexplore.ieee.org
This paper proposes an off-line single-stage LED driver based on a novel approach to
reduce low-frequency ripple in light-emitting diode (LED) arrays supplied from mains, while …
reduce low-frequency ripple in light-emitting diode (LED) arrays supplied from mains, while …
Study on the thermal performance of LED luminaire using finite element method
Large LED (light-emitting diodes) clusters are currently designed to replace the commonly
lamps used in parks, roadways, tunnels and street lighting. But the success of these designs …
lamps used in parks, roadways, tunnels and street lighting. But the success of these designs …
Electrothermal methodology applied to flicker analysis in off-line LED systems
VC Bender, ND Barth, GC Flores… - IECON 2013-39th …, 2013 - ieeexplore.ieee.org
In this paper a study about LED (light-emitting diode) luminous flux performance using an
electrothermal methodology is presented. The objective is to evaluate and quantify the …
electrothermal methodology is presented. The objective is to evaluate and quantify the …
Quasi‐resonant LED driver with capacitive isolation
A Abramovitz, I Reichman, D Shmilovitz - Electronics Letters, 2015 - Wiley Online Library
A low part count, efficient quasi‐resonant light‐emitting diode driver is proposed. The
proposed driver relies on a capacitive safety isolation barrier, which eliminates the need for …
proposed driver relies on a capacitive safety isolation barrier, which eliminates the need for …