PROJECT TITLE :

Integrated Demand Side Management Game in Smart Energy Hubs

ABSTRACT:

The presence of energy hubs and also the advancement in good grid technologies have motivated system planners to deploy intelligent multicarrier energy systems entitled “sensible energy hub” (S.E. Hub). During this paper, we model S.E. Hub, and propose a fashionable energy management technique in electricity and natural gas networks based on integrated demand facet management (IDSM). In standard studies, energy consumption is optimized from the angle of every individual user while not considering the interactions with every different. Here, the interaction among S.E. Hubs in IDSM program is formulated as a noncooperative game. The existence and uniqueness of a pure strategy Nash equilibrium (NE) is proved. Additionally, the strategies for every S.E. Hub are determined by proposing a distributed algorithm. We have a tendency to additionally address the IDSM game in a Cloud Computing (CC) framework to achieve efficient data processing and data management. Simulations are performed on a grid consisting of ten S.E. Hubs. We compare the CC framework with standard data processing techniques to judge the efficiency of our proposed approach in determining NE. It's conjointly shown that within the NE, the energy price for every S.E. Hub and the peak-to-average ratio of the electricity demand decrease substantially.


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