HYBRID ELECTRICAL VEHICAL
Hybrid inverter using solar battery charger
INDUCTION MOTOR PROTECTION SYSTEM AND DATA MONITORING OVER IOT BLYNK APP
Induction Motor Protection System Using Arduino Over IOT
In this project, we give a novel perspective on industrial automation and defect monitoring. Induction motors are used in a variety of sectors. As a result, industrial automation is required for precise and accurate operation.
In this project, we give a novel perspective on industrial automation and defect monitoring. Induction motors are used in a variety of sectors. As a result, industrial automation is required for precise and accurate operation.
INDUCTION MOTOR SPEED CONTROL AND DATA MONITORING OVER IOT
In this project we give a special idea of industrial automation, and fault monitoring. Induction motors are the nerves of many industries. Hence industrial automation is required for precise and accurate operation. The project Arduino-based parameter monitoring system for induction motor proposes a control and monitoring system for induction motor based on Arduino communication protocol for safe and economic data communication in industrial fields. The current, voltage, and temperature of the induction motors are very important parameters for its control system. The performance of an induction motor is directly affected by these fundamental quantities.
In this project we give a special idea of industrial automation, and fault monitoring. Induction motors are the nerves of many industries. Hence industrial automation is required for precise and accurate operation. The project Arduino-based parameter monitoring system for induction motor proposes a control and monitoring system for induction motor based on Arduino communication protocol for safe and economic data communication in industrial fields. The current, voltage, and temperature of the induction motors are very important parameters for its control system. The performance of an induction motor is directly affected by these fundamental quantities.
INDUSTRIAL AUTOMATION USING LDR & SMOKE SENSOR OVER IOT
The IOT industry protection system using smoke sensor,LDR sensor& IOTcontroller is a system designed to protect industries from losses due to accidents using Internet of things.
Gas leakages may lead to fires leading to huge industrial losses, also instant fire detection is needed in case of furnace blasts or other conditions.
Also low lighting in industries may create improper work conditions increasing the probability of accidents.
The system makes use of smoke sensor, LDR sensor& IOT Controller to achieve this functionality.
The IOT industry protection system using smoke sensor,LDR sensor& IOTcontroller is a system designed to protect industries from losses due to accidents using Internet of things.
Gas leakages may lead to fires leading to huge industrial losses, also instant fire detection is needed in case of furnace blasts or other conditions.
Also low lighting in industries may create improper work conditions increasing the probability of accidents.
The system makes use of smoke sensor, LDR sensor& IOT Controller to achieve this functionality.
INTENSITY CONTROL OF STREET LIGHT USING LDR AND ARDUINO
Red Light Emitting Diodes (LED) replaces HID lamps in street lighting system to include dimming feature. A Arduino is used to control the intensity by developing pulse width modulated signals that drives a MOSFET to switch the LEDs according to achieve desired operation.
Red Light Emitting Diodes (LED) replaces HID lamps in street lighting system to include dimming feature. A Arduino is used to control the intensity by developing pulse width modulated signals that drives a MOSFET to switch the LEDs according to achieve desired operation.
IOT BASED HOME AUTOMATION USING BLYNK
IOT BASED STREET LIGHT CONTROL AND FAULT DETECTION
IOT CONTROL HOME AUTOMATION BY USING BLYNK APP
The main objective of this project is to develop a home automation system with IoT application by using BLYNK app. As technology is advancing so houses are also getting smarter. Modern houses are gradually shifting from conventional switches to centralized control system, involving wireless controlled switches. Presently, conventional wall switches located in different parts of the house makes it difficult for the user to go near them to operate. Even more it becomes more difficult for the elderly or physically handicapped people to do so.
The main objective of this project is to develop a home automation system with IoT application by using BLYNK app. As technology is advancing so houses are also getting smarter. Modern houses are gradually shifting from conventional switches to centralized control system, involving wireless controlled switches. Presently, conventional wall switches located in different parts of the house makes it difficult for the user to go near them to operate. Even more it becomes more difficult for the elderly or physically handicapped people to do so.
KID RESCUE SYSTEAM FROM BOREWEEL
The aim of this project is to give an innovative concept tohandle the bore well rescue operations. Nowadays child oftenfalls down in the borehole which is left uncovered and getstrapped. It is difficult and also risky to rescue the trappedchildren to aid in such rescue we proposed a system ofdesigning robots to the rescue of a child in a borehole.
The structure consists of power supply, switch pad, gear motors, ??concentrator, camera and Microcontroller.The condition of trapped child is captured with CCTV camera
and monitored on a TV
The aim of this project is to give an innovative concept tohandle the bore well rescue operations. Nowadays child oftenfalls down in the borehole which is left uncovered and getstrapped. It is difficult and also risky to rescue the trappedchildren to aid in such rescue we proposed a system ofdesigning robots to the rescue of a child in a borehole.
The structure consists of power supply, switch pad, gear motors, ??concentrator, camera and Microcontroller.The condition of trapped child is captured with CCTV camera
and monitored on a TV
LINE FOLLOWING ROBOT USING ARDUINO
The project is designed to develop a robotic vehicle that follows a specific path. This project uses an Arduino development Board. A pair of photo sensors comprising IR transmitter and photo diode is interfaced to the Arduino to detect a specified path for its movement.
The project is designed to develop a robotic vehicle that follows a specific path. This project uses an Arduino development Board. A pair of photo sensors comprising IR transmitter and photo diode is interfaced to the Arduino to detect a specified path for its movement.
















