Blockchain Staking Mechanism for Player Type Upgrades
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Solution Overview
Problem
Current online gaming platforms lack an efficient system for allowing players to upgrade from one player type to another, limiting access to additional utilities and hindering seamless interaction among different player types within the same gaming environment.
Innovation Solution
A system and method that facilitate the staking of combinations of different digital articles on a permanent registry to upgrade player types, enabling players to access additional utilities by exchanging a specific amount of fungible and non-fungible digital articles, which are recorded and managed on blockchain registries, allowing in-game actions and utility access based on upgraded player types.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a system allows players to upgrade player types with additional utilities, then player versatility and access to features improve, but system complexity and management overhead increase
Solution Approach 1:
The patent introduces a staking mechanism as an intermediary system between players and player type upgrades. Instead of direct upgrades, players stake digital articles (tokens, NFTs, or other in-game assets) as collateral to temporarily assume a higher player type. This intermediary staking system manages the complexity by creating a standardized process that automatically handles verification, duration tracking, and reversion, reducing the burden on the overall system architecture.
Solution Approach 2:
The patent implements dynamic player type assignment through time-limited staking. Player types are no longer static but can be temporarily acquired through staking and automatically revert after a predetermined duration or upon unstaking. This dynamic approach allows the system to flexibly manage player type assignments without requiring permanent structural changes, thereby controlling system complexity while maintaining versatility.
2Reliability
If the system records and manages digital article transactions on blockchain registries, then transaction security and transparency improve, but processing time and computational resources increase
Solution Approach 1:
The patent implements preliminary verification of digital articles before they are staked for player type upgrades. The system pre-validates the authenticity, ownership, and eligibility of digital articles (tokens, NFTs, etc.) against the blockchain registry before initiating the staking process. This preliminary action ensures transaction security is established upfront, reducing the need for repeated verification during the staking period and thereby minimizing processing time delays.
Solution Approach 2:
The patent replaces manual or centralized verification mechanisms with automated blockchain-based verification. By leveraging the inherent security and transparency of blockchain registries, the system automatically verifies digital article transactions without requiring intensive computational resources for manual validation. This substitution maintains high security standards while reducing processing time through automated consensus mechanisms.
3Adaptability or versatility
If players can stake combinations of different digital articles, then economic flexibility and player engagement improve, but verification complexity and validation overhead increase
Solution Approach 1:
The patent segments the verification process into distinct components: digital article validation, combination rule checking, and staking condition verification. Each segment handles a specific aspect of the complex verification task, allowing the system to manage different types of digital articles and their combinations through modular verification routines. This segmentation reduces overall verification complexity by breaking down the monolithic validation process into manageable, reusable modules.
Solution Approach 2:
The patent creates a universal staking framework that can handle multiple types of digital articles (tokens, NFTs, in-game assets) and their various combinations through a single standardized process. The verification system is designed to be multi-functional, accommodating different article types and combination rules without requiring separate verification mechanisms for each case. This universality simplifies the overall verification complexity while maintaining economic flexibility.
Data Source
AI summary
Systems and methods to facilitate staking of combinations of different types of digital articles on a permanent registry to upgrade player type within an online gaming platform supporting different player types are disclosed. Exemplary implementations may execute instances of a game; control player accounts associated with the players; facilitate usage of multiple different digital articles that are usable to upgrade players from the first player type to a second player type, wherein upgrading unlocks additional utilities; receive an upgrade instruction from the first player, in exchange for staking a combination of a particular amount of a first type of digital article and a second type of digital article; perform an in-game action falling within the additional utilities on behalf of the first player, wherein the in-game action is performed by virtue of the first player having been upgraded to the second player type; and/or other steps.


