Dual Roulette Gaming System with Automated Betting Management
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Solution Overview
Problem
Traditional roulette tables are limited by the need for a highly skilled dealer to manage multiple players, leading to high player-to-dealer ratios and potential for human error in payouts.
Innovation Solution
A dual roulette gaming system with two roulette wheels and a computing device that manages betting windows and gameplay operations, allowing for dealer-assisted gameplay and increased efficiency by enabling multiple games to be played simultaneously.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If a traditional single roulette wheel is used with a skilled dealer managing multiple players, then the game can be played with live dealer assistance, but the player to dealer ratio becomes high (5:1 or 6:1) and limits the number of players that can be served
Solution Approach 1:
The system divides the roulette gaming function into two separate wheels, allowing independent operation of each wheel. This segmentation enables the dealer to manage two games simultaneously, effectively doubling the number of players that can be served without increasing the dealer count, thus resolving the contradiction between maintaining dealer assistance and increasing player capacity.
2Productivity
If a traditional single roulette wheel is used, then the game flow is simple, but the number of games that can be played in a given time is limited
Solution Approach 1:
The system merges two roulette wheels into a single integrated gaming table with unified betting surfaces and coordinated operation. This combining approach allows two independent games to run simultaneously on one table, doubling the games per time without proportionally increasing the physical space or operational complexity, thus resolving the contradiction between increasing productivity and managing device complexity.
3Reliability
If a skilled dealer manually manages payouts, then the game can be played traditionally, but human error can occur in payout determination
Solution Approach 1:
The computing device continuously monitors the outcomes of both roulette wheels and automatically calculates and determines payouts based on the game results. This feedback mechanism ensures accurate payout determination by comparing actual outcomes with bet placements, eliminating human error while maintaining the traditional live dealer experience, thus resolving the contradiction between increasing automation and ensuring reliability.
Data Source
AI summary
The present disclosure relates to systems and methods for live roulette gaming systems, methods, and computing devices. Embodiments include a roulette gaming table having a first roulette wheel and a second roulette wheel, and at least one computing device to manage gameplay operations at the roulette gaming table. In an example, the computing device may accept, during a first betting window, a first bet from an interactive gaming interface, and begin the first gaming event by initiating a wheel spin of the first roulette wheel. During the wheel spin of the first roulette wheel, a second betting window may be opened for a second gaming event associated with the second roulette wheel. A second bet from the interactive gaming interface may be accepted during the second betting window. The second betting window closes when the wheel spin of the first roulette wheel ends, and after a result of the first gaming event is confirmed at the dealer console, the wheel spin of the second roulette wheel is initiated to begin the second gaming event.


