Virtual Game Voting Result Display via Sub-Area Segmentation
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Solution Overview
Problem
In virtual game environments, players lack an efficient method to display and determine the collective voting result of action plans, leading to uncertainty in decision-making within virtual camps.
Innovation Solution
A method and apparatus for displaying a voting result, where a terminal device receives selection and voting signals for action plans, adjusts sub-areas in a vote counting area based on support status, and displays the final voting result, enhancing the visibility of support statuses and decision outcomes.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If a traditional voting display method is used in virtual game environments, then the system complexity is low, but the efficiency and clarity of displaying voting results is poor
Solution Approach 1:
The vote counting area is divided into multiple sub-areas, with each sub-area corresponding to a specific virtual object. This segmentation allows individual voting statuses to be displayed separately and clearly, improving the efficiency of voting result display without overwhelming the interface with a single complex display element.
Solution Approach 2:
The patent introduces a visual dimension to voting results by using different display characteristics (such as color, brightness, or icon state) to represent different support statuses. This dimensional transformation allows players to quickly comprehend voting outcomes through visual cues rather than text-heavy or numerical displays alone.
2Loss of information
If detailed voting information is displayed for each virtual object, then the clarity of support statuses is improved, but the interface complexity increases
Solution Approach 1:
Each sub-area within the vote counting area is assigned specific display characteristics tailored to represent the voting status of the corresponding virtual object. This local customization allows detailed voting information to be presented in a standardized, organized manner that maintains clarity without creating overall interface complexity.
Solution Approach 2:
The patent utilizes different display characteristics (such as color variations, brightness levels, or visual states) to indicate different support statuses for action plans. This visual encoding method conveys detailed voting information intuitively, allowing players to quickly understand the voting landscape without being overwhelmed by text or complex data structures.
3Speed
If real-time voting updates are implemented, then the decision-making speed is improved, but the system resource consumption increases
Solution Approach 1:
The vote counting area and sub-areas are pre-configured and displayed before the voting process begins. This preliminary setup allows the system to efficiently update voting statuses in real-time by simply modifying the display characteristics of existing sub-areas rather than creating or restructuring interface elements during the voting process, thereby reducing computational overhead.
Solution Approach 2:
The patent uses a standardized template structure where each sub-area represents a virtual object's voting status. This templated approach allows for efficient real-time updates by copying and modifying the display state of sub-areas based on incoming voting data, rather than performing complex processing for each individual vote, thus optimizing system resource usage during real-time decision-making.
Data Source
AI summary
A method for displaying a voting result includes: receiving a selection operation signal for an action plan from a virtual object in a target camp; displaying a vote counting area corresponding to the action plan in an interface of the terminal device, the vote counting area being used for displaying voting on the action plan, and the vote counting area comprising sub-areas in a to-be-selected state; receiving a voting operation signal for the action plan, the voting operation signal indicating a support status for the action plan; adjusting one of the sub-areas from the to-be-selected state to a selected state with a display characteristic corresponding to the support status according to the voting operation signal, wherein different support status corresponds to different display characteristics for the sub-areas; and displaying a voting result corresponding to the action plan based on the voting operation signal.


