Results 211 to 220 of about 710 (236)
Some of the next articles are maybe not open access.

Virtual Fractional-Order-Inductor Based Second Harmonic Current Suppression Method

IEEE Transactions on Industrial Electronics
Liangzong He, Zhile Lin, Hongyan Zhou
exaly   +2 more sources

Low-Frequency Current Ripple Reduction Control Method Based on Fractional-Order Inductor and Fractional-Order Capacitor

2024 IEEE 10th International Power Electronics and Motion Control Conference (IPEMC2024-ECCE Asia)
Liangzong He, Hongyan Zhou
exaly   +2 more sources

On the realization of Current-Mode Fractional-order Simulated Inductors

2019 IEEE International Symposium on Signal Processing and Information Technology (ISSPIT), 2019
The objective of this work is to revisit the design criteria of current-mode simulated inductors in order to realize their fractional-order versions. Numerical simulations and SPICE circuits simulations are carried out on these generalized fractional-order simulated inductors.
Kareem H. Khattab   +3 more
openaire   +1 more source

Simple Chaotic Oscillator with Wideband Passive Fractional-Order Inductor

2019 42nd International Conference on Telecommunications and Signal Processing (TSP), 2019
This paper demonstrates through computer-aided simulations that simple loop composed of single nonlinear active two-port and a fractional-order filter can generate robust chaotic attractor. Involved passive ladder trans-impedance mode filter contains two-terminal constant phase element that is accurately approximated in the frequency domain in wide ...
Jiri Petrzela, Ondrej Domansky
openaire   +1 more source

Experimental studies on realization of fractional inductors and fractional‐order bandpass filters

International Journal of Circuit Theory and Applications, 2014
SummaryThis paper presents the hardware realization and performance study of fractional inductors of order 0 < α < 2. The fractional inductors used in this work have been realized with the help of general impedance converter circuit and fractional capacitors.
Madhab Chandra Tripathy   +3 more
openaire   +2 more sources

A Fractional-Order Model of Filter Inductors within Converter Control Bandwidth

2018 IEEE Electronic Power Grid (eGrid), 2018
The four-element equivalent inductor model is not accurate in the low frequency range. The paper model proposes an inductor model with fractional-order component that can model the increase of the resistance and the decrease of the inductance along the frequency. From controller design point of view, the frequency response of the inductor under control
Shih-Feng Chou   +2 more
openaire   +3 more sources

Wide-band Fractional-order filter design using coaxial TEM fractional-inductor

Next Research
Kanhu Charan Bhuyan   +2 more
exaly   +2 more sources

Emulation of current excited fractional-order capacitors and inductors using OTA topologies

Microelectronics Journal, 2016
A novel topology suitable for emulating fractional-order capacitors and inductors using current excitation is achieved using a fractional-order differentiator/integrator block and appropriately configured Operational Transconductance Amplifiers. The scheme is capable of emulating both fractional-order capacitors and fractional-order inductors without ...
Georgia Tsirimokou   +3 more
openaire   +1 more source

Emulation of Fractional-Order Capacitors (CPEs) and Inductors (FOIs)

2017
The design of fractional-order capacitors and inductor emulators is introduced in a systematic way procedure, where the second-order approximation of the CFE is utilized in order to approximate the variable s α of fractional calculus. OTAs are employed as building blocks, using MOS transistors biased in subthreshold region, offering the advantage of ...
Georgia Tsirimokou   +2 more
openaire   +1 more source

A High-Power Filtering Method with Parallel Structure of Fractional-Order Positive and Negative Inductor

2025 7th International Conference on Energy Systems and Electrical Power (ICESEP)
Kuozhong Tian, Boqian Dong
exaly   +2 more sources

Home - About - Disclaimer - Privacy