Automating the Transition Between Sensorless Motor Control Methods for the NASA Glenn Research Center Flywheel Energy Storage System

Automating the Transition Between Sensorless Motor Control Methods for the NASA Glenn Research Center Flywheel Energy Storage System
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 28
Release: 2018-06-21
Genre:
ISBN: 9781721672134


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The NASA Glenn Research Center (GRC) has been working to advance the technology necessary for a flywheel energy storage system for the past several years. Flywheels offer high efficiency, durability, and near-complete discharge capabilities not produced by typical chemical batteries. These characteristics show flywheels to be an attractive alternative to the more typical energy storage solutions. Flywheels also offer the possibility of combining what are now two separate systems in space applications into one: energy storage, which is currently provided by batteries, and attitude control, which is currently provided by control moment gyroscopes (CMGs) or reaction wheels. To date, NASA Glenn research effort has produced the control algorithms necessary to demonstrate flywheel operation up to a rated speed of 60,000 RPM and the combined operation of two flywheel machines to simultaneously provide energy storage and single axis attitude control. Two position-sensorless algorithms are used to control the motor/generator, one for low (0 to 1200 RPM) speeds and one for high speeds. The algorithm allows the transition from the low speed method to the high speed method, but the transition from the high to low speed method was not originally included. This leads to a limitation in the existing motor/generator control code that does not allow the flywheels to be commanded to zero speed (and back in the negative speed direction) after the initial startup. In a multi-flywheel system providing both energy storage and attitude control to a spacecraft, speed reversal may be necessary. Fehrmann, Elizabeth A. and Kenny, Barbara H. Glenn Research Center NASA/TM-2004-213295, E-14742, AIAA Paper 2004-5602


Automating the Transition Between Sensorless Motor Control Methods for the NASA Glenn Research Center Flywheel Energy Storage System
Language: en
Pages: 28
Authors: National Aeronautics and Space Administration (NASA)
Categories:
Type: BOOK - Published: 2018-06-21 - Publisher: Createspace Independent Publishing Platform

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The NASA Glenn Research Center (GRC) has been working to advance the technology necessary for a flywheel energy storage system for the past several years. Flywh
Simulation of Flywheel Energy Storage System Controls
Language: en
Pages: 14
Authors:
Categories:
Type: BOOK - Published: 2001 - Publisher:

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Filtering and Control of High Speed Motor Current in a Flywheel Energy Storage System
Language: en
Pages: 24
Authors: Barbara H. Kenny
Categories:
Type: BOOK - Published: 2013-06 - Publisher: BiblioGov

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The NASA Glenn Research Center has been developing technology to enable the use of high speed flywheel energy storage units in future spacecraft for the last se
Sensorless Control of a Brushless Dc Motor Coupled to a Flywheel
Language: en
Pages: 68
Authors: Runyararo Dikinya
Categories:
Type: BOOK - Published: 2012-03 - Publisher: LAP Lambert Academic Publishing

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Brushless direct current (dc) motors serve as an important tool in flywheel energy storage systems. Thus, finding techniques that improve their performance will
Position Sensorless Control Techniques for Permanent Magnet Synchronous Machine Drives
Language: en
Pages: 0
Authors: Gaolin Wang
Categories: Technology & Engineering
Type: BOOK - Published: 2020-11-25 - Publisher: Springer

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The book focuses on position sensorless control for PMSM drives, addressing both basic principles and experimental evaluation. It provides an in-depth study on