Microcontroller Based Power Monitoring For 600kva Battery Back Up

The Microcontroller Based Power Monitoring For 600kva Battery Back Up report proposes an innovative design to develop a system based on micro controller that is used for monitoring the voltage, current and temperature of a distribution transformer in a substation and to protect the system from the rise in mentioned parameters. Providing the protection to the distribution transformer can be accomplished by shutting down the entire unit with the aid of the Radio frequency Communication.

The network control technology based on microcontroller is an electronic device for continuous monitoring of energy use parameters such as voltage, current, frequency, etc. in different parts of electric current or other electronic devices. The entire system is controlled by the microcontroller (80C31) and real-time monitoring of multiple parameters. So the name of real-time control of high capacity (400kVA-600kVA) BACK UP BATTERY SYSTEM. This system is an 8-channel unit, 8 analog inputs and analog multiplexer consists of an A / D converter, ROM, RAM, etc. The different channel buffers are characterized by simple switch operation selected accepted. UPS-channels and alarms are in the microcontroller and control process parameters.

 Microcontroller Based Power Monitoring For 600kva Battery Back Up Conclusion:

This report presented a design of a system based on microcontroller that is used to monitor and control the voltage, current and temperature of a distribution transformer. The proposed system which has been designed to monitor the transformer’s essential parameters continuously monitors the parameters throughout its operation. If the microcontroller recognizes any increase in the level of voltage, current or temperature values the unit has been made shutdown in order to prevent it from further damages. The system not only controls the distribution transformer in the substation by shutting it down, but also displays the values throughout the process for user’s reference. This claims that the proposed design of the system makes the distribution transformer more robust against some key power quality issues which makes the voltage, current or temperature to peak. Hence the distribution is made more secure, reliable and efficient by means of the proposed system.

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