Advancing Metaverse's experience through optimization of players’ decisions
Abstract
• Decision Support System enhances player decision-making in the dynamic Metaverse. • Blockchain and NFTs can be used for accurate asset representation in the Metaverse. • Genetic algorithms optimize character traits under constraints in the Metaverse. • Genetic algorithms dominate over greedy in repeated games simulation. The Metaverse, a virtual world enabling user interaction with digital environments and assets, increasingly utilizes blockchain and Non-Fungible Tokens (NFTs) to represent unique characters and items. Representing and valuing individual digital characters is crucial in the Metaverse as it establishes ownership, identity, and status within these virtual worlds. This research investigates decision-making within collaborative online games, where players face the challenge of optimizing their character's value through strategic NFT acquisition. This challenge is analogous to the Knapsack Problem, aiming to maximize the value of items selected within a limited capacity, just as players seek to maximize character rarity within budget constraints. We propose a Decision Support System (DSS) employing genetic algorithms to assist players in tackling this complex optimization problem. A simulation framework, based on the "SunflowerLand" Metaverse, demonstrates that players using the DSS achieve significantly higher character rarity, highlighting the potential of this approach to enhance player experience.
Community
0 commentsNo discussion yet
Be the first to share a question or observation.