Development of Solar-Powered Microcontroller-Relay-Based Control System Omnidirectional Wheelchair

Author:

Okafor Patrick Uche1,Arinze Ndidi Stella1,Onah Osondu Ignatius1,Ogbodo Ebenezer Nnajiofo1

Affiliation:

1. Enugu State University of Science and Technology, Nigeria

Abstract

A solar-powered omnidirectional wheelchair is implemented for physically challenged persons. The framework was mounted on the wheels that were connected with two direct current (DC) motors. The ratings of the battery and solar module were determined using system voltage (12V). A 7,805-voltage regulator was used to supply 5VDC to the AT89352 microcontroller. The microcontroller was programmed to provide a reference signal to the motor. The motor provides the needed torque to drive the wheels through interconnected relays. The relays are energized by the microcontroller and omnidirectional movement achieved through relays connected with microprocessor and micro switches, eliminating the need for joysticks and complex control mechanisms. System performance test result showed that the auxiliary solar power supply of the wheelchair increased the travel range by approximately 86% compared with that of a wheelchair powered by battery alone.

Publisher

IGI Global

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