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Analysis of Meta-Heuristic Algorithms to Optimal Sizing of Grid-Connected Hybrid Renewable Power Systems

Domaine:

environment and energy

Type de record:

dataset
Créateur:
Fop
Éditeur:
AgaNnaTamTch
Éditeur:
Men
Hôte:avatar
This dataset is used to analyze optimal sizing strategies for a grid-connected hybrid renewable energy system integrating photovoltaic and biogas generators with energy storage. It helped investigate several optimization techniques to determine the optimal size. The data are input into the Non-dominated Sorting Whale Optimization Algorithm (NSWOA), the Multi-Objective Gray Wolf Optimizer (MOGWO), the Multi-Objective Grasshopper Optimization Algorithm (MOGOA), the Multi-Objective Salp Swarm Algorithm (MSSA), and the Non-dominated Sorting Genetic Algorithm II (NSGA-II) for this purpose. Real-time evaluation data integrated with meteorological information from Debre Markos in Ethiopia are also the input for simulation. Results show that the cost of energy (COE) values for MOPSO, NSWOA, MOGWO, MOGOA, MSSA and NSGA-II are 0.091 €/kWh, 0.08625 €/kWh, 0.092 €/kWh, 0.097 €/kWh, 0.089 € / kWh and 0.087 €/kWh, respectively. Meanwhile, the net present cost (NPC) values for these methods are 3.54 × 10⁶ €, 3.15 × 10⁶ €, 3.25 × 10⁶ €, 3.95 × 10⁶ €, 3.39 × 10⁶ €, and 3.19 × 10⁶ €. Based on the simulated results, the NSWOA technique is the best for the correct system size.

Visit

data.mendeley.com

Tags

Energy EconomicsIntelligent AgentHybrid SystemNet Present ValueMatimatical Optimization TechniqueOff-Grid Power Supply System

Licenses

Creative Commons Attribution 4.0 Internationalhttp://creativecommons.org/licenses/by/4.0

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