OPTIMUM ENERGY MANAGEMENT SYSTEM
The project is designed to monitor the number of persons entering as well as exiting a room. Electrical loads are switched ON as the first person enters and switches OFF when the last person leaves. IR sensors used in combination with microcontroller to monitor all the operations. This helps in saving lot of energy.
The project is designed to monitor the number of persons entering as well as exiting a room. Electrical loads are switched ON as the first person enters and switches OFF when the last person leaves. IR sensors used in combination with microcontroller to monitor all the operations. This helps in saving lot of energy.
PARKING ALLOTMENT WITH DISPLAY
The project is designed to develop a density- based parking allotment system. This system indicates no entry to a vehicle to park when the parking area is fully occupied. Parking congestion is a severe problem in many major cities across the world and it has become a nightmare for the commuters in these cities.
The project is designed to develop a density- based parking allotment system. This system indicates no entry to a vehicle to park when the parking area is fully occupied. Parking congestion is a severe problem in many major cities across the world and it has become a nightmare for the commuters in these cities.
PATIENT HEALTH MONITARING OVER IOT .
PATIENT HEALTH MONITORING OVER IOT
Patient health monitoring over IOT
PH CONTROL SYSTEM USING ARDUINO OVER IOT
Nowadays water scarcity is a big concern for farming. This project helps the farmers to irrigate the farmland in an efficient manner with automated irrigation system based on soil humidity. Humidity sensor is used to find the soil humidity and based on this microcontroller drives the solenoid valve. Irrigation status is updated to the server or localhost using Personal Computer. Java platform is used here for getting information via serial communication from microcontroller and to update in the server. In addition for better cropping system, fertilizers required for the crops, best crops to cultivate for the particular climatic and soil conditions are updated to server at regular basis by monitoring soil PH level, Temperature level of the field area etc., By using PC host, crop is continuously monitored. Also LCD is used to display the PH, temperature and moisture level. This will improve the cultivation method and leads to better productivity.
Nowadays water scarcity is a big concern for farming. This project helps the farmers to irrigate the farmland in an efficient manner with automated irrigation system based on soil humidity. Humidity sensor is used to find the soil humidity and based on this microcontroller drives the solenoid valve. Irrigation status is updated to the server or localhost using Personal Computer. Java platform is used here for getting information via serial communication from microcontroller and to update in the server. In addition for better cropping system, fertilizers required for the crops, best crops to cultivate for the particular climatic and soil conditions are updated to server at regular basis by monitoring soil PH level, Temperature level of the field area etc., By using PC host, crop is continuously monitored. Also LCD is used to display the PH, temperature and moisture level. This will improve the cultivation method and leads to better productivity.
PH LEVEL MEASUREMENT USING ARDUINO
Piezoelectric Sensor Based Footsteps Power Generation And Mobile Charging OR Load
Day by day, the population of the country is increasing and the requirement of the power is also increasing. At the same time the wastage of energy is also increasing in many ways. So, reforming this energy back to usable form is the major solution. In this footstep power generation project, we are generating power with the help of human???s footsteps; this power is then used to charge battery
Day by day, the population of the country is increasing and the requirement of the power is also increasing. At the same time the wastage of energy is also increasing in many ways. So, reforming this energy back to usable form is the major solution. In this footstep power generation project, we are generating power with the help of human???s footsteps; this power is then used to charge battery
PIR Sensor Based Office Management
In this project our aim is to use Microcontroller for office management. This project presents design and implementation concepts for a office management. system based on microcontroller as central controllers. In this we have studied all technologies which are used for implementation for office management. In this dissertation, microcontroller is the crusial part.
In this project our aim is to use Microcontroller for office management. This project presents design and implementation concepts for a office management. system based on microcontroller as central controllers. In this we have studied all technologies which are used for implementation for office management. In this dissertation, microcontroller is the crusial part.
Power Generation Using Piezoelectric Sensor
Day by day, the population of the country is increasing and the requirement of the power is also increasing. At the same time the wastage of energy is also increasing in many ways. So, reforming this energy back to usable form is the major solution. In this footstep power generation project, we are generating power with the help of human???s footsteps; this power is then used to charge battery. The power is stored in a battery that can be used to charge. This system is powered by Atmega 328, it consists of Arduino IDE, RFID sensor, USB cable and LCD. When we power on the system, the system enters into registration mode.
Day by day, the population of the country is increasing and the requirement of the power is also increasing. At the same time the wastage of energy is also increasing in many ways. So, reforming this energy back to usable form is the major solution. In this footstep power generation project, we are generating power with the help of human???s footsteps; this power is then used to charge battery. The power is stored in a battery that can be used to charge. This system is powered by Atmega 328, it consists of Arduino IDE, RFID sensor, USB cable and LCD. When we power on the system, the system enters into registration mode.
RAILWAY TRACK CRACK DETECTION
Railway Track Crack Detection
India has the world’s fourth largest railway networks, which carry out most of the commercial transport in India. The train transportation increased due to high speed, economical, environment friendly, safety and modern characteristics of railway system. Major problem with this transportation is the bad weather condition, which cause flaws and cracks leads to the damage of railway tracks.
India has the world’s fourth largest railway networks, which carry out most of the commercial transport in India. The train transportation increased due to high speed, economical, environment friendly, safety and modern characteristics of railway system. Major problem with this transportation is the bad weather condition, which cause flaws and cracks leads to the damage of railway tracks.

















