Distributed Load Shedding in Energy Distribution System with IoT

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Year : August 16, 2024 at 4:22 pm | [if 1553 equals=””] Volume :14 [else] Volume :14[/if 1553] | [if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] : 02 | Page : –

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Ananda Krishnan P. H., Defeo Sackson, Hari Krishna K. S., Sreehari Prasad, Reshma S., Sonima. M. P.,

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  1. Student, Student, Student, Student, Assistant Professor, Assistant Professor Department of Electrical and Electronics Engineering, College of Engineering, Kidangoor, Kottayam, Department of Electrical and Electronics Engineering, College of Engineering, Kidangoor, Kottayam, Department of Electrical and Electronics Engineering, College of Engineering, Kidangoor, Kottayam, Department of Electrical and Electronics Engineering, College of Engineering, Kidangoor, Kottayam, Department of Electrical and Electronics Engineering, College of Engineering, Kidangoor, Kottayam, Department of Electrical and Electronics Engineering, College of Engineering, Kidangoor, Kottayam Kerala, Kerala, Kerala, Kerala, Kerala, Kerala India, India, India, India, India, India
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Abstract

nThis project is designed to develop a modern power distribution and control system which is a very thoughtful one in reducing unwanted power usage in modern times. It is a microcontroller operated system where we fix a maximum power limit for each consumer. Night time is considered to be the peak time for energy consumption, to be precise from 6pm to 11 pm. Here we program the microcontroller to cut off the supply when someone uses more power than a pre-set threshold limit. If the consumer connects more load than the threshold limit, it will alert him for a certain time and then automatically cut off the supply. The system also has cloud access to the authority’s server so that they can monitor
each consumer and can manage the connection and disconnection of the power supply. We program the microcontroller to monitor the load, whether it is inside the set limit. Here, we use a current and voltage sensor to calculate the unit of power consumption which will be varied according to the load connected. Microcontroller calculates the unit and amount according to the input pulses from the sensors. An LCD is interfaced for the visual display of unity and amount. A buzzer is connected to the controller to alert the over usage and the load relay will cut off if the usage remains above threshold. The controller can access the server since it has Wi-Fi connectivity. Every second the reading from each consumer.

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Keywords: LCD, Microcontroller, Wi-Fi connectivity, Buzzer, Modern power distribution, energy sources, environmental concerns, Electrical Base Station,

n[if 424 equals=”Regular Issue”][This article belongs to Trends in Electrical Engineering(tee)]

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[/if 424][if 424 equals=”Special Issue”][This article belongs to Special Issue under section in Trends in Electrical Engineering(tee)][/if 424][if 424 equals=”Conference”]This article belongs to Conference [/if 424]

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How to cite this article: Ananda Krishnan P. H., Defeo Sackson, Hari Krishna K. S., Sreehari Prasad, Reshma S., Sonima. M. P.. Distributed Load Shedding in Energy Distribution System with IoT. Trends in Electrical Engineering. August 16, 2024; 14(02):-.

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How to cite this URL: Ananda Krishnan P. H., Defeo Sackson, Hari Krishna K. S., Sreehari Prasad, Reshma S., Sonima. M. P.. Distributed Load Shedding in Energy Distribution System with IoT. Trends in Electrical Engineering. August 16, 2024; 14(02):-. Available from: https://journals.stmjournals.com/tee/article=August 16, 2024/view=0

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References

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  1. S. Saleh, P. Pijnenburg, and E. Castillo-Guerra, “Load Aggregation From Generation- Follows-Load to Load-Follows- Generation: Residential Loads,” IEEE Transactions on Industry Applications, vol. 53, pp. 833-842, 2017.
  2. Abhishek J Kumar, Hamal Thomas Paul, Muhammed Rasheed, Sudev V. K., Ninu Joy. “Dynamic Load Shedding Management with IoT”. IJCRT. June 2023; 11(6):2320-2882.
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  5. Awad AS, El-Fouly TH, Salama MM. Optimal distributed generation allocation and load shedding for improving distribution system reliability. Electric Power Components and Systems. 2014 Apr 26;42(6):576-84.
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[if 424 not_equal=””]Regular Issue[else]Published[/if 424] Subscription Original Research

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Volume 14
[if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] 02
Received June 19, 2024
Accepted July 19, 2024
Published August 16, 2024

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