This paper presents a wireless-controlled robot that utilizes GSM communication for remote operation. The robot is controlled through a standard mobile handset, which sends commands to control its movements. The system consists of two mobile devices, one acting as the transmitter and the other as the receiver. The transmitter sends commands via GSM communication, and the receiver decodes these commands to control the robot's motion. This project establishes a oneway communication link between the transmitter and the receiver, enabling remote control of the robot. The communication operates over regular mobile networks, incurring standard call charges. The robot's movements can be directed in various directions based on the commands received by the receiver. The setup involves the use of a DTMF decoder circuit, microcontroller, and DC motor drive circuit to execute the commands effectively
Citations
APA: Mrs.JV.Pesha (2025). Design and implementation of GSM Controlled Versatile Robotic Vehicle Using a PIC Microcontroller. DOI: 10.15158.LJN.2022.V5.I1.123
AMA: Mrs.JV.Pesha. Design and implementation of GSM Controlled Versatile Robotic Vehicle Using a PIC Microcontroller. 2025. DOI: 10.15158.LJN.2022.V5.I1.123
Chicago: Mrs.JV.Pesha. "Design and implementation of GSM Controlled Versatile Robotic Vehicle Using a PIC Microcontroller." Published 2025. DOI: 10.15158.LJN.2022.V5.I1.123
IEEE: Mrs.JV.Pesha, "Design and implementation of GSM Controlled Versatile Robotic Vehicle Using a PIC Microcontroller," 2025, DOI: 10.15158.LJN.2022.V5.I1.123
ISNAD: Mrs.JV.Pesha. "Design and implementation of GSM Controlled Versatile Robotic Vehicle Using a PIC Microcontroller." DOI: 10.15158.LJN.2022.V5.I1.123
MLA: Mrs.JV.Pesha. "Design and implementation of GSM Controlled Versatile Robotic Vehicle Using a PIC Microcontroller." 2025, DOI: 10.15158.LJN.2022.V5.I1.123