An IoT Assimilated Distributed Control Method for Green Electrical Transmission Grids

Author:

Nawi Mohd Nasrun Mohd1,Selvi Tamil2,Neeraja Peddinti3,Yellapragada Rama Krishna4,Jain Himani5

Affiliation:

1. Disaster Management Institute (DMI), School of Technology Management and Logistics, Universiti Utara Malaysia, Kedah, MALAYSIA

2. RMD Engineering College, Tamilnadu, INDIA

3. Department of Computer Applications, School of Computing, Mohan Babu University (erstwhile Sree Vidyanikethan Engineering College), Tirupati, INDIA

4. Department of Computer Science and Engineering, Koneru Lakshmaiah Education Foundation, Green Fields, Vaddeswaram, 522302, INDIA

5. Department of MCA, ABES Engineering College, Ghaziabad, Uttar Pradesh, INDIA

Abstract

Green electrical grids utilize renewable energy to ensure sustainable transmission from natural resources. Internet of Things (IoT) like pervasive platforms is integrated with the grids for improving the automation in such power grids. This article considers the IoT control over the green grids for uninterrupted power transmission. The proposed method named Assimilated Distributed Control (ADC) balances the generated and distribution of electrical power based on demand. The IoT paradigm monitors the rising demand for recommending multi-renewable power source assimilation for meeting the distribution demands. In this process, linear decision-making for distribution management and assimilation is performed. The decision-making process relies on power generation and distribution ratio from low to peak demand intervals. Therefore, the number of resource assimilations relies on the distributed control for handling peak demands. The proposed method is analyzed using distribution ratio, peak demand, and recommendation assimilation.

Publisher

World Scientific and Engineering Academy and Society (WSEAS)

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