A grid-connected induction machine capable of operation at unity and leading power factor

@article{Knight2013AGI,
  title={A grid-connected induction machine capable of operation at unity and leading power factor},
  author={Andrew Michael Knight and John C. Salmon and R. Ul Haque and Nirmana Perera and Mohammad Sedigh Toulabi},
  journal={2013 IEEE Energy Conversion Congress and Exposition},
  year={2013},
  pages={238-245},
  url={https://api.semanticscholar.org/CorpusID:10442849}
}
  • A. KnightJ. Salmon M. Toulabi
  • Published in 28 October 2013
  • Engineering, Physics
  • 2013 IEEE Energy Conversion Congress and Exposition
This paper presents a method to operate a grid-connected induction machine such that reactive power may be supplied to the grid. Using the principle of series voltage injection, two control approaches are presented. The first control approach is suitable for systems with steady loads and allows the reactive power flow to be dynamically controlled. The second control approach may be applied to systems with variable loads and results in operation with a leading power factor The principle of… 

Soft start and voltage control of grid connected induction motors using floating capacitor H-bridge converters

A system is described whereby floating capacitor H-bridge converters are located in each phase between the utility grid and a squirrel cage induction motor. Injecting a series voltage in each phase,

Grid-Connected Induction Motor Using a Floating DC-Link Converter under Unbalanced Voltage Sag

A series compensator to mitigate balanced or unbalanced voltage sags of grid-connected induction motors and has some interesting features, such as soft-start, motor performance improvement or reactive power generation.

Grid-Connected Induction Motor Using a Floating DC-Link Converter Under Unbalanced Voltage Sag

This article proposes a series compensator with unbalanced voltage sag ride-through capability applied to grid-connected induction motors. A conventional three-phase voltage source inverter (VSI) is

Improve the voltage profile of the grid-integrated induction motor with a fuzzy-based voltage source converter

This article suggests installing a series compensator on grid-connected induction motors that allows for the ride-through of unbalanced voltage sag. Fuzzy logic controls the motor voltages in a

Smart Grid Connection of an Induction Motor Using a Three-Phase Floating H-bridge System as a Series Compensator

Electrical grid voltage sags are a significant industrial power quality concern. According to a survey result across the US, voltage sags and short-duration power outages are responsible for 92% of

Power Factor Improvement and Dynamic Performance of an Induction Machine With a Novel Concept of a Converter-Fed Rotor

This paper investigates an induction machine with a novel concept of the rotor fed by a converter. The stator is Y-connected and directly connected to the grid, while the rotor windings are

Analysis of an induction machine using a rotor integrated converter with a floating capacitor

A novel topology of induction machine with a rotor integrated converter with a floating capacitor is investigated in this paper. The stator windings of the induction machine are directly connected to

Soft Start and Voltage Control of Induction Motors Using Floating Capacitor H-Bridge Converters

An application of H-bridges that enable soft start and power factor correction of cage induction machines is presented. The proposed power electronics employs floating capacitor H-bridges connected

Enhance Performance of the Grid connected Induction Motor under Unbalanced Voltage Sags with ANN based Floating DC Link Converter

The modelling of a floating DC link capacitor as a series compensator for operating a grid-connected induction motor and the proposed series compensation topology has better ride-through capability against unbalanced voltage sags in grid voltage is presented.

Improve Performance of the Grid Connected Induction Motor Under Unbalanced Voltage Sags with ANFIS-Based Floating DC Link Converter

This manuscript presents the modeling of a floating DC link capacitor as a series compensator for operating a grid-connected induction motor. In conventional three-phase H-bridge converter's voltage

Electric Motor Performance Improvement Using Auxiliary Windings and Capacitance Injection

Generally, some electric machines such as induction machines and synchronous reluctance motors require reactive power for operation and power factor is typically improved by installation of capacitor banks parallel to the motor and inserting a variable capacitor which is adjusted for unity according with the load.

Induction machine at unity power factor with rotating power electronic converter

A new configuration for the self-excitation of the induction machine invented by Magnus Lindmark is presented. The power electronic converter using solid state switches is connected to the rotor

Power factor enhancement of induction machines by means of solid-state excitation

A novel concept for power factor correction of induction machines is introduced that employs an auxiliary three-phase stator winding together with a pulse-width-modulated (PWM) inverter to supply

Comparative evaluation of power-factor improvement techniques for squirrel-cage induction motors

Relatively simple methods of improving the power factor of squirrel-cage induction motors were tested. The methods evaluated under controlled laboratory conditions for a 10-hp, high-efficiency motor

Energy-Efficiency Policy Opportunities for Electric Motor-Driven Systems

This paper is the first global analysis of the potential energy savings which could be found in electric motor- driven system (EMDS). EMDS currently accounts for more than 40% of global electricity