Wireless Power Charging with Automation Effectively by Super Capacitor
Loading...
Files
Date
2017-08-23T09:34:05Z
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
Wireless transfer has been employed since long time in telecommunications. Radio
waves, cellular transmissions and Internet WiFi are only a few examples of wireless
transmission. Recently, there’s been a growing interest towards the experimentation
of a deeply challenging idea for wireless applications, supplying electronic devices
without cords. The development, application and spread of this new concept could
make consumers life enormously easier.
As the usage of the portable electronic devices is increasing, the demand for longer
battery life is also increasing. These batteries need to be recharged or replaced
periodically. It is a hassle to charge or change the battery after a while, especially
when there is no power outlet around. Therefore, our team is inspired to design a
wireless battery charger. This wireless battery charger is expected to eliminate all the
hassles with today's battery technology. Wireless power transfer through the use of
strongly coupled magnetic resonances works very well for efficient mid range power
transfer in dynamic environments compared with other power technologies.
Mobile phones, as many other portable electronic devices powered by electrical
energy, generally use electro-chemical Li-ion batteries to store energy. These batteries
are light and can come in many different shapes and sizes, being easily adapted to
provide the required autonomy to our everyday portable electronics. However, they
exhibit lengthy charging cycles and a short life span. Super capacitors can be a
better option for the conventional batteries. Super capacitors act like any other kind of
capacitor, only they can store tremendous amounts of energy. Super capacitors are
able to attain greater energy densities while still maintaining the characteristic high
power density of conventional capacitors
Description
Keywords
1NH13EE039, 1NH13EE044, 1NH13EE405, 1NH14EE411