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WiTricity Technology: The Basics Presented by Bretny Khamphavong Image source: http://www.witricity.com/index.html
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WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

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Page 1: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

WiTricity Technology: The Basics

Presented byBretny Khamphavong

Image source: http://www.witricity.com/index.html

Page 2: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

WiTricity… What is it?

• Wireless electricity = WiTricity

• The transfer of electric energy or power over a distance without the use of wires

• Electricity

– Current – flow of electrons through the atmosphere

– Charges through the atmosphere

Page 3: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Magnetism

• Fundamental force of nature

– Materials attract or repel

• Oscillating magnetic fields

– Vary with time

– Generated by altering current

• Drawings

– Strength

– Direction

Page 4: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Earth’s Magnetic Fields

Image source: http://www.ssec.honeywell.com/magnetic/overviews.html

Page 5: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Electromagnetism

• Interdependence of time-varying electric and magnetic fields

• An oscillating magnetic field produces an electric field

• An oscillating electric field produces a magnetic field

Page 6: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Magnetic Induction

• A conductor which carries alternating current

– Example: copper, silver, aluminum

• Loop generates an oscillating magnetic field

• Second loop may pick up current

– Power devices

• Examples of magnetic induction: electric transformers and electric generators

Page 7: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Magnetic Fields

Orange – coil with current

Blue – magnetic fields created

If current is reversed, the direction of the magnetic fields also change.

Image source: http://www.witricity.com/pages/technology.html

Page 8: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Coupling

• Energy/Power– Energy source has a means of transferring energy

to another object

• Magnetic– Magnetic field of one object interacts with a

second object and induces current

• Resonant Magnetic– Natural frequencies of two objects are

approximately the same

Page 9: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Resonance

• Defined as the natural frequency at which energy can most efficiently be added to an oscillating system

• Examples:

– Child on a swing

– Singer shattering a wine glass

Page 10: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

WiTricity Power

Power source connected to alternating current, or AC, which then powers a light bulb

Image source: http://www.witricity.com/pages/technology.html

Page 11: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

WiTricity’s Beginnings:The Invention of

WiTricity Technology

Page 12: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Things that Go Beep in the Night

• MIT Associate Professor of Physics, Marin Soljačić

• Awakened by his dying mobile phone

• “A phone should take care of its own charging!”

Image source: http://web.mit.edu/physics/people/faculty/soljacic_marin.html

Page 13: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Eureka! Coupled Resonators

• Practical and safe wireless power transfer must exchange strong energy without affecting living beings or other environmental objects (furniture or walls)

• Solution: coupled resonators

– Two resonant objects of the same resonant frequency exchange energy efficiently without much leakage

Page 14: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Strong Coupling

• Highly efficient energy transfer

• Universal, applying to all kinds of resonances– Acoustic

– Mechanical

– Electromagnetic

• Soljačić, Karalis, and Joannopoulospublished first theoretical resultsin 2006, again in Annals of Physicsof 2008

Page 15: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Strong Coupling Con’t

• Soljačić, Kurs, Karalis, Moffatt, Joannopoulos, and Fisher validated theories experimentally

• Proved coupling could be achieved over distances that greatly exceeded the size of the resonant objects themselves

• Published in Science journal in 2007

Page 16: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

WiTricity Technology is Born

• Experiment equipment:

– two copper coils—each a self-resonant system,

– one coil connected to AC acted as the resonant source,

– second coil acted as the resonant capture device and connected to a 60 watt light bulb

Page 17: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

WiTricty in Action

Power source and capture device suspended in mid-air about 2.5 meters apart with nylon thread

Image source: Multi-hop Wireless Electricity Charging Protocol inWireless Sensor Networks Proposal

Page 18: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

WiTricity Technology is Born Con’t

• Various objects placed between the source and capture device

• Demonstrated magnetic fields transferring power through selected materials and around metallic obstacles

Page 19: WiTricity Technology: The Basics - Radford University · 2010-10-04 · Eureka! Coupled Resonators •Practical and safe wireless power transfer must exchange strong energy without

Conclusion

• It is possible to transmit electric energy or power over a distance without the use of wires

• Marin Soljačić accomplished this through the use of strongly coupled magnetic resonators

• The commercial implementation of this concept is known as WiTricity