Search

Bulent Sarlioglu

from Madison, WI
Age ~55

Bulent Sarlioglu Phones & Addresses

  • 705 Ondossagon Way, Madison, WI 53719
  • 3422 Maricopa St, Torrance, CA 90503
  • Jersey Village, TX
  • PO Box 260047, Madison, WI 53726 (310) 993-8606

Work

Company: Ieee Sep 2019 Position: Professor and special session chair for 2020 ieee ecce

Education

Degree: Doctorates, Doctor of Philosophy School / High School: University of Wisconsin - Madison Specialities: Electrical Engineering

Skills

Power Electronics • Electronics • Simulations • Engineering • Power Systems • Matlab • Electrical Engineering • Simulink • R&D • Aerospace • Systems Engineering • Sensors • Renewable Energy • Electric Vehicles • Mathematical Modeling • Signal Processing • Automation • Embedded Systems • Engineering Management • Control Systems Design • Electromagnetics • Materials Science • Electric Power • Product Development • System Design • Testing • Programming • Control Theory • Algorithms • Electricians • Manufacturing • Program Management • Pcb Design • Analog Circuit Design • Digital Signal Processors • Circuit Design • Power Generation • Semiconductors • Finite Element Analysis • Six Sigma • Characterization • Physics • Numerical Analysis • Electric Motors

Ranks

Certificate: Six Sigma Green Belt

Industries

Research

Resumes

Resumes

Bulent Sarlioglu Photo 1

Professor And Special Session Chair For 2020 Ieee Ecce

View page
Location:
Madison, WI
Industry:
Research
Work:
Ieee
Professor and Special Session Chair For 2020 Ieee Ecce

Ieee
Professor and Technical Program Co-Chair For 2019 Ieee Ecce

Ieee Sep 2017 - Jun 2018
General Chair For Ieee Itec 2018 - Ieee Transportation Electrification Conference

Honeywell 2007 - 2011
Staff Systems Engineer

University of Wisconsin-Madison 2007 - 2011
Associate Professor
Education:
University of Wisconsin - Madison
Doctorates, Doctor of Philosophy, Electrical Engineering
University of Missouri - Columbia
Master of Science, Masters, Electrical Engineering
Istanbul Technical University
Bachelors, Bachelor of Science, Electrical Engineering
Skills:
Power Electronics
Electronics
Simulations
Engineering
Power Systems
Matlab
Electrical Engineering
Simulink
R&D
Aerospace
Systems Engineering
Sensors
Renewable Energy
Electric Vehicles
Mathematical Modeling
Signal Processing
Automation
Embedded Systems
Engineering Management
Control Systems Design
Electromagnetics
Materials Science
Electric Power
Product Development
System Design
Testing
Programming
Control Theory
Algorithms
Electricians
Manufacturing
Program Management
Pcb Design
Analog Circuit Design
Digital Signal Processors
Circuit Design
Power Generation
Semiconductors
Finite Element Analysis
Six Sigma
Characterization
Physics
Numerical Analysis
Electric Motors
Certifications:
Six Sigma Green Belt

Publications

Us Patents

Decoupling Of Cross Coupling For Floating Reference Frame Controllers For Sensorless Control Of Synchronous Machines

View page
US Patent:
6940251, Sep 6, 2005
Filed:
Apr 30, 2004
Appl. No.:
10/834857
Inventors:
Bulent Sarlioglu - Torrance CA, US
Colin E. Huggett - Longmont CO, US
Assignee:
Honeywell International Inc. - Morristown NJ
International Classification:
H02P003/18
US Classification:
318721, 318700, 318254, 318609, 318610
Abstract:
A synchronous motor controller and method of controlling a synchronous motor without using rotor position sensors are provided. In a floating synchronous reference frame controller, phase currents are measured and a current Park vector is determined. The error between an initially arbitrary floating reference frame is reduced with a control loop. Decoupling terms based on the estimated speed of the rotor and the stator winding inductance are used to generate decoupled voltage terms in the v- and u-axis of the floating synchronous reference frame. The decoupled voltage command is converted back to a stator reference frame and applied to the synchronous motor via a power electronic converter. As a result u-axis current is minimized during transients, and a robust and accurate estimation of the current vector to be used in coordinate transformation for controlling the machine are achieved and the need for overrating of motor and inverter components is avoided.

Rectification System For Improving Power Quality Of Electrical Power Systems

View page
US Patent:
6995993, Feb 7, 2006
Filed:
Oct 14, 2003
Appl. No.:
10/683388
Inventors:
Bulent Sarlioglu - Torrance CA, US
Colin E. Huggett - Longmont CO, US
Assignee:
Honeywell International, Inc. - Morristown NJ
International Classification:
H02M 1/12
US Classification:
363 44, 323215, 323361
Abstract:
A system and method for an autotransformer configuration including a plurality of windings which can be used to provide a substantial reduction in harmonics. The autotransformer includes a series of wye windings configured to provide a constant length voltage vector for any given input voltage, and a series of delta windings having a variable length voltage vector based upon turns ratio. The delta winding circuit is electrically coupled with the wye winding circuit to allow circulation of triplen harmonics, thereby reducing the effect on input current waveform such that total harmonic distortion (THD) is reduced, and producing an equivalent kVA rating that is lower than prior art applications, which results in savings in size, weight and cost.

Method And System For Providing Single-Phase Excitation Techniques To A Start Exciter In A Starter/Generator System

View page
US Patent:
6998726, Feb 14, 2006
Filed:
Dec 10, 2002
Appl. No.:
10/315051
Inventors:
Bulent Sarlioglu - Torrance CA, US
Colin E. Huggett - Torrance CA, US
Assignee:
Honeywell International Inc. - Morristown NJ
International Classification:
F02N 11/04
US Classification:
290 31, 318721, 318701, 322 10
Abstract:
A system and method is provided for starting a prime mover coupled to a synchronous starter/generator. The system includes an exciter converter that provides a non-fundamental only signal to a field winding of an exciter of the synchronous generator. The non-fundamental signal provides a first rotating field for the field winding of the exciter. Exciter armature windings induce an AC signal from the rotating field where at least one rectifier rectifies the induced AC signal. A field winding of a main machine provides a flux from the rectified signal of the at least one rectifier. Armature windings of the main machine receive an AC signal via a main machine converter.

Electromagnetic Interference Filter For An Autotransformer

View page
US Patent:
7095636, Aug 22, 2006
Filed:
Sep 15, 2004
Appl. No.:
10/941512
Inventors:
Bulent Sarlioglu - Torrance CA, US
Assignee:
Honeywell International Inc. - Morristown NJ
International Classification:
H02M 1/14
H02M 1/12
US Classification:
363 39, 363 44, 363 48
Abstract:
A filter system for attenuating electromagnetic interference (EMI) of an autotransformer-based rectification system that utilizes the leakage inductance of the autotransformer and one or more capacitors connected on the secondary side and optionally one or more differential mode inductors and input capacitors connected on the primary side to form a differential mode EMI filter. This configuration reduces the size, weight, and cost of the differential mode EMI filter when compared with a differential filter formed by placing the inductors and capacitors on the primary side.

Enhanced Floating Reference Frame Controller For Sensorless Control Of Synchronous Machines

View page
US Patent:
7193383, Mar 20, 2007
Filed:
Jul 6, 2005
Appl. No.:
11/174550
Inventors:
Bulent Sarlioglu - Torrance CA, US
Colin E. Huggett - Longmont CO, US
Assignee:
Honeywell International, Inc. - Morristown NJ
International Classification:
G05F 1/70
US Classification:
318438, 318799, 318801, 318803
Abstract:
A method and system for controlling a power converter coupled to a polyphase power line. The method includes measuring at least two motor phase currents, obtaining a floating reference frame for the current Park vector, adjusting the reference frame based on an estimated rotor speed, and controlling the power converter via the floating reference frame to reinitiate power to a motor while a rotor is still moving.

System And Method For Dc Power Generation From A Reluctance Machine

View page
US Patent:
7307403, Dec 11, 2007
Filed:
Nov 8, 2005
Appl. No.:
11/268486
Inventors:
Bulent Sarlioglu - Torrance CA, US
Colin E. Huggett - Longmont CO, US
Assignee:
Honeywell International, Inc. - Morristown NJ
International Classification:
H02P 3/00
US Classification:
322 10, 322 11, 322 12, 322 15, 322 20, 322 22, 323205, 323207
Abstract:
A system and method is provided for generating DC power using a synchronous reluctance machine () or a salient-pole synchronous machine () and a power converter (). The present invention can be used to achieve power production for a synchronous reluctance machine (), or can be used to achieve partial production of power from a traditional salient-pole synchronous machine/starter () in the case where the salient-pole synchronous machine/starter has degenerated into a synchronous reluctance machine due to, for example, a loss of excitation. In a power generation system, a control system and method can include a power converter (), controlled by a voltage command and at least one of a measured DC link () voltage or DC link () current, for use with a synchronous reluctance machine armature winding (A) and a prime mover (), such that movement of the synchronous reluctance machine rotor of the synchronous reluctance machine can be used to produce at least partial DC power generation.

System And Method For Ac Power Generation From A Reluctance Machine

View page
US Patent:
7309974, Dec 18, 2007
Filed:
Dec 20, 2005
Appl. No.:
11/311627
Inventors:
Bulent Sarlioglu - Torrance CA, US
Colin E. Huggett - Longmont CO, US
Assignee:
Honeywell International, Inc. - Morristown NJ
International Classification:
H20P 9/46
US Classification:
322 47, 322 22, 322 20, 322 89, 322 24, 322 36, 322 90, 290 4 D
Abstract:
A system and method is provided for generating AC power using a synchronous reluctance machine () or a salient-pole synchronous machine () and a power converter (). The present invention can be used to achieve power production for a synchronous reluctance machine (), or can be used to achieve AC power from a traditional salient-pole synchronous machine/starter () without dependence upon a rotor current which is subject to failure. In the power generation system, the control system and method can include a power converter (), controlled by a voltage command and at least one of a measured AC bus () current and voltage, and a DC link () voltage, for use with a synchronous reluctance machine () and a prime mover (), such that movement of the rotor of the synchronous reluctance machine () can be used to produce at least partial AC power generation on the AC bus ().

System And Method For Ac Power Generation From A Reluctance Machine

View page
US Patent:
7355367, Apr 8, 2008
Filed:
Aug 2, 2007
Appl. No.:
11/833125
Inventors:
Bulent Sarlioglu - Torrance CA, US
Colin E. Huggett - Longmont CO, US
Assignee:
Honeywell International, Inc. - Morristown NJ
International Classification:
H20P 9/46
US Classification:
322 47, 322 22, 322 20, 322 89, 322 24, 290 4 D
Abstract:
A system and method is provided for generating AC power using a synchronous reluctance machine () or a salient-pole synchronous machine () and a power converter (). The present invention can be used to achieve power production for a synchronous reluctance machine (), or can be used to achieve AC power from a traditional salient-pole synchronous machine/starter () without dependence upon a rotor current which is subject to failure. In the power generation system, the control system and method can include a power converter (), controlled by a voltage command and at least one of a measured AC bus () current and voltage, and a DC link () voltage, for use with a synchronous reluctance machine () and a prime mover (), such that movement of the rotor of the synchronous reluctance machine () can be used to produce at least partial AC power generation on the AC bus ().
Bulent Sarlioglu from Madison, WI, age ~55 Get Report