A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning Feature

To achieve a free-positioning wireless power transfer (WPT) system, the output power must be regulated throughout the operation. This paper presents a novel output power control of a WPT system, based on the model predictive control (MPC). The output power is predicted by utilizing the system&rs...

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Main Authors: Supapong Nutwong, Anawach Sangswang, Sumate Naetiladdanon, Ekkachai Mujjalinvimut
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/7/1671
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spelling doaj-4358c6d20a0f497ab628c085fb2f7a6b2020-11-25T00:37:28ZengMDPI AGEnergies1996-10732018-06-01117167110.3390/en11071671en11071671A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning FeatureSupapong Nutwong0Anawach Sangswang1Sumate Naetiladdanon2Ekkachai Mujjalinvimut3Department of Electrical Engineering, Faculty of Engineering, King Mongkut’s University of Technology Thonburi, Bangkok 10140, ThailandDepartment of Electrical Engineering, Faculty of Engineering, King Mongkut’s University of Technology Thonburi, Bangkok 10140, ThailandDepartment of Electrical Engineering, Faculty of Engineering, King Mongkut’s University of Technology Thonburi, Bangkok 10140, ThailandDepartment of Electrical Engineering, Faculty of Engineering, King Mongkut’s University of Technology Thonburi, Bangkok 10140, ThailandTo achieve a free-positioning wireless power transfer (WPT) system, the output power must be regulated throughout the operation. This paper presents a novel output power control of a WPT system, based on the model predictive control (MPC). The output power is predicted by utilizing the system’s mathematical model. The optimal duty cycle for a desired output power is obtained through the minimization of the objective function, which is simple and easy to implement, with no need for gain tuning. The proposed controller is implemented on the primary side, without any measurement or communication devices on the secondary side. This reduces the cost, size, and complexity of the WPT system. The load resistance and mutual inductance identification method is also introduced. It is based on the reflected impedance knowledge, where only the information of primary current is required. Experimental results of the output power step response show better performance compared with conventional Proportional-Integral (PI) control. The proposed controller is experimentally validated on a 200 W kettle. The output power can be kept constant at 200 W while the kettle is laterally moved. With the proposed controller, the kettle can be placed freely up to 7 cm from the align position, which is 63.64% of the primary coil’s outer radius.http://www.mdpi.com/1996-1073/11/7/1671wireless power transferfree-positioningmodel predictive controloutput power regulationprimary-side controlparameters identificationreflected impedance
collection DOAJ
language English
format Article
sources DOAJ
author Supapong Nutwong
Anawach Sangswang
Sumate Naetiladdanon
Ekkachai Mujjalinvimut
spellingShingle Supapong Nutwong
Anawach Sangswang
Sumate Naetiladdanon
Ekkachai Mujjalinvimut
A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning Feature
Energies
wireless power transfer
free-positioning
model predictive control
output power regulation
primary-side control
parameters identification
reflected impedance
author_facet Supapong Nutwong
Anawach Sangswang
Sumate Naetiladdanon
Ekkachai Mujjalinvimut
author_sort Supapong Nutwong
title A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning Feature
title_short A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning Feature
title_full A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning Feature
title_fullStr A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning Feature
title_full_unstemmed A Novel Output Power Control of Wireless Powering Kitchen Appliance System with Free-Positioning Feature
title_sort novel output power control of wireless powering kitchen appliance system with free-positioning feature
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-06-01
description To achieve a free-positioning wireless power transfer (WPT) system, the output power must be regulated throughout the operation. This paper presents a novel output power control of a WPT system, based on the model predictive control (MPC). The output power is predicted by utilizing the system’s mathematical model. The optimal duty cycle for a desired output power is obtained through the minimization of the objective function, which is simple and easy to implement, with no need for gain tuning. The proposed controller is implemented on the primary side, without any measurement or communication devices on the secondary side. This reduces the cost, size, and complexity of the WPT system. The load resistance and mutual inductance identification method is also introduced. It is based on the reflected impedance knowledge, where only the information of primary current is required. Experimental results of the output power step response show better performance compared with conventional Proportional-Integral (PI) control. The proposed controller is experimentally validated on a 200 W kettle. The output power can be kept constant at 200 W while the kettle is laterally moved. With the proposed controller, the kettle can be placed freely up to 7 cm from the align position, which is 63.64% of the primary coil’s outer radius.
topic wireless power transfer
free-positioning
model predictive control
output power regulation
primary-side control
parameters identification
reflected impedance
url http://www.mdpi.com/1996-1073/11/7/1671
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