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PROJECT DESCRIPTION

The main aim of the project is to acquire real-time data of distribution transformers remotely over internet falling under the category of Internet of Things-IOT. For this real-time scenario we take one temperature sensor, one potential transformer and one current transformer for monitoring T, V, I data of the transformer and then send them to a remote location anywhere in the world.

These three analog values are taken in multiplexing mode connected to a programmable microcontroller of 8051 family   through an ADC 0808. Then the values of all the sensors are sent sequentially as per the frequency of multiplexing of the ADC by MC .

They are then sent directly through an Wi-Fi module under TCP IP protocol to a dedicated IP that displays the data in real time chart form in any web connected PC / Laptop for display in 3 different charts. The real time data is also seen at the sending end upon a LCD display interfaced to the microcontroller.

 The power supply consists of a step down transformer 230/12V, which steps down the voltage to 12V AC. This is converted to DC using a Bridge rectifier and it is then regulated to +5V using a voltage regulator 7805 which is required for the operation of the microcontroller , 3.3 volt for the Wi-Fi unit and other components.

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The main aim of the project is to acquire real-time data of distribution transformers remotely over internet falling under the category of Internet of Things-IOT. For this real-time scenario we take one temperature sensor, one potential transformer and one current transformer for monitoring T, V, I data of the transformer and then send them to a remote location anywhere in the world.

These three analog values are taken in multiplexing mode connected to a programmable microcontroller of 8051 family   through an ADC 0808. Then the values of all the sensors are sent sequentially as per the frequency of multiplexing of the ADC by MC .

They are then sent directly through an Wi-Fi module under TCP IP protocol to a dedicated IP that displays the data in real time chart form in any web connected PC / Laptop for display in 3 different charts. The real time data is also seen at the sending end upon a LCD display interfaced to the microcontroller.

 The power supply consists of a step down transformer 230/12V, which steps down the voltage to 12V AC. This is converted to DC using a Bridge rectifier and it is then regulated to +5V using a voltage regulator 7805 which is required for the operation of the microcontroller , 3.3 volt for the Wi-Fi unit and other components.

PROJECT HIGHLIGHTS
Easy to use, Self-explanatory kit.
All-inclusive solution kit.
Extensive audio-visuals available.
Branding-free material.
Pre-programmed Microcontroller.
Call/mail for Tech Support from 10 am - 7 pm IST.
×
Easy to use, Self-explanatory kit.
All-inclusive solution kit.
Extensive audio-visuals available.
Branding-free material.
Pre-programmed Microcontroller.
Call/mail for Tech Support from 10 am - 7 pm IST.
BLOCK DIAGRAM
IOT (Internet of Things) Based Remote Monitoring of Transformer / Generator Health/ Domestic Load
Hardware Requirements
  • Microcontroller
  • LCD display
  • A to D converter
  • Temperature sensors
  • Relay
  • Resistors
  • Capacitors
  • Diodes
  • Transformer
  • Voltage Regulator
  • Transistors
  • PT
  • CT
  • WiFi module as required
×
  • Microcontroller
  • LCD display
  • A to D converter
  • Temperature sensors
  • Relay
  • Resistors
  • Capacitors
  • Diodes
  • Transformer
  • Voltage Regulator
  • Transistors
  • PT
  • CT
  • WiFi module as required
Software Requirements
  • Keil compiler
  • Language: Embedded C or Assembly.
×
  • Keil compiler
  • Language: Embedded C or Assembly.
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