Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Hybrid DC–AC Microgrid Energy Management System Using an Artificial Gorilla Troops Optimizer Optimized Neural Network

View through CrossRef
In this research, we introduce an artificial gorilla troop optimizer for use in artificial neural networks that manage energy consumption in DC–AC hybrid distribution networks. It is being proposed to implement an energy management system that takes into account distributed generation, load demand, and battery-charge level. Using the profile data, an artificial neural network was trained on the charging and discharging characteristics of an energy storage system under a variety of distribution-network power situations. As an added bonus, the percentage of mistakes was maintained far below 10%. An artificial neural network is used in the proposed energy management system, and it has been taught to operate in the best possible manner by using an optimizer inspired by gorillas called artificial gorilla troops. The artificial gorilla troops optimizer optimize the weights and bias of the neural network based on the power of the distributed generator, the power of the grid, and the reference direct axis current to obtain most suitable energy management system. In order to simulate and evaluate the proposed energy management system, small-scale hybrid DC/AC microgrids have been created and tested. When compared to other systems in the literature, the artificial gorilla troops optimizer enhanced neural network energy management system has been shown to deliver 99.55% efficiency, making it the clear winner.
Title: Hybrid DC–AC Microgrid Energy Management System Using an Artificial Gorilla Troops Optimizer Optimized Neural Network
Description:
In this research, we introduce an artificial gorilla troop optimizer for use in artificial neural networks that manage energy consumption in DC–AC hybrid distribution networks.
It is being proposed to implement an energy management system that takes into account distributed generation, load demand, and battery-charge level.
Using the profile data, an artificial neural network was trained on the charging and discharging characteristics of an energy storage system under a variety of distribution-network power situations.
As an added bonus, the percentage of mistakes was maintained far below 10%.
An artificial neural network is used in the proposed energy management system, and it has been taught to operate in the best possible manner by using an optimizer inspired by gorillas called artificial gorilla troops.
The artificial gorilla troops optimizer optimize the weights and bias of the neural network based on the power of the distributed generator, the power of the grid, and the reference direct axis current to obtain most suitable energy management system.
In order to simulate and evaluate the proposed energy management system, small-scale hybrid DC/AC microgrids have been created and tested.
When compared to other systems in the literature, the artificial gorilla troops optimizer enhanced neural network energy management system has been shown to deliver 99.
55% efficiency, making it the clear winner.

Related Results

Les soldats français arrivent en Suisse. 1798 : Libération ou occupation ? La perspective française.
Les soldats français arrivent en Suisse. 1798 : Libération ou occupation ? La perspective française.
This work is largely based on the voluminous documentation of General Schauenburg (1748-1831), Commander-in-chief of the « French army in Helvetia » from March 28 to December 12, 1...
RETRACTED ARTICLE: Multi-objective energy management in microgrids with hybrid energy sources and battery energy storage systems
RETRACTED ARTICLE: Multi-objective energy management in microgrids with hybrid energy sources and battery energy storage systems
AbstractMicrogrid with hybrid renewable energy sources is a promising solution where the distribution network expansion is unfeasible or not economical. Integration of renewable en...
Modelling and fault ride-through control of grid supporting inverter-based microgrid
Modelling and fault ride-through control of grid supporting inverter-based microgrid
This thesis is focused on modeling and fault ride-through control, local load power delivery, and grid power exchange of power electronic interfaced Distributed Energy Resources (D...
Control and management strategies for a microgrid
Control and management strategies for a microgrid
Stratégies de contrôle et de gestion d'un microgrid Aujourd'hui et à l'avenir, l'augmentation des prix du carburant, la déréglementation et les contraintes de l'env...
Research on Switching Model of Microgrid with Distributed Power Supply
Research on Switching Model of Microgrid with Distributed Power Supply
The hybrid microgrid with distributed power supply which includes wind turbine (WT), photovoltaic (PV) inverter and power converter system (PCS), not only could be connected to the...
Multi-strategy integrated gorilla troops optimizer for solving global optimization and engineering design problems
Multi-strategy integrated gorilla troops optimizer for solving global optimization and engineering design problems
Abstract Inspired by the intricate group dynamics of wild gorilla populations, the Artificial Gorilla Troops Optimizer (GTO) represents a novel approach in swarm intelligen...
Airport Microgrid and Its Incorporated Operations
Airport Microgrid and Its Incorporated Operations
This paper presents the development of an airport bipolar DC microgrid and its interconnected operations with the utility grid, electric vehicle (EV), and more electric aircraft (M...
Coordination and optimization control of hybrid microgrid based on layered event triggering
Coordination and optimization control of hybrid microgrid based on layered event triggering
In the centralized communication and distributed control of hybrid microgrid, a hierarchical event triggering control strategy with the participation of the microgrid central contr...

Back to Top