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Solar Powered Portable Charger for Disaster Recovery: Design and Development using Mini Solar Panel and Arduino Microcontroller - Couverture souple

Abu Bakar, Rashidah; Gunawan, Teddy Surya; Kartiwi, Mira

 
9783659480935: Solar Powered Portable Charger for Disaster Recovery: Design and Development using Mini Solar Panel and Arduino Microcontroller

Synopsis

This book presents the development of solar powered portable charger to charge mobile phone during disaster recovery. It emphasizes on efficient solar energy harvesting circuit for charging mobile phone battery with the utilization of intermediate battery. In this book, Sealed Lead-Acid (SLA) battery was chosen as intermediate battery to protect the Lithium Ion battery which seems very sensitive to overcharging and discharging. Concerning on delivering the most efficient portable charger, polycrystalline silicon solar panel was selected which may supply up to 400mW of average power. In addition, Pulse Width Modulation (PWM) charging method was employed using Arduino microcontroller. During disaster, main power supply will be interrupted. If only the victims can communicate through their mobile phone, there will be high chance that they can be rescued by the rescue team. Note that, the portable cell tower can be set up by the relevant authorities during disaster. This book can benefit government, NGO, or volunteers during disaster, as well as many people in disaster prone area.

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Présentation de l'éditeur

This book presents the development of solar powered portable charger to charge mobile phone during disaster recovery. It emphasizes on efficient solar energy harvesting circuit for charging mobile phone battery with the utilization of intermediate battery. In this book, Sealed Lead-Acid (SLA) battery was chosen as intermediate battery to protect the Lithium Ion battery which seems very sensitive to overcharging and discharging. Concerning on delivering the most efficient portable charger, polycrystalline silicon solar panel was selected which may supply up to 400mW of average power. In addition, Pulse Width Modulation (PWM) charging method was employed using Arduino microcontroller. During disaster, main power supply will be interrupted. If only the victims can communicate through their mobile phone, there will be high chance that they can be rescued by the rescue team. Note that, the portable cell tower can be set up by the relevant authorities during disaster. This book can benefit government, NGO, or volunteers during disaster, as well as many people in disaster prone area.

Biographie de l'auteur

Rashidah Abu Bakar obtained her BEng from IIUM in 2013 and is currently working as a failure analysis engineer at Western Digital. Teddy Surya Gunawan received his PhD degree from UNSW in 2007 and he is currently an Associate Professor at IIUM. Mira Kartiwi obtained her PhD from UOW in 2009 and she is currently Assistant Professor at IIUM.

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