Virtual Application Object Status Plane for Output Probability Determination
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Solution Overview
Problem
Online games face challenges in accurately outputting virtual application objects, leading to inaccuracies due to the variety of types and states of these objects, which affects user experience and game performance.
Innovation Solution
A method and apparatus that acquire current status information of virtual application objects, construct a virtual application object status plane, and determine output probabilities to identify a target virtual application object for accurate output, utilizing a network device with a probability acquisition network to enhance accuracy and flexibility.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If online games output virtual application objects based on various types and states, then the game functionality and versatility are improved, but the accuracy of outputting the correct virtual application object deteriorates
Solution Approach 1:
The patent segments the complex task of outputting virtual application objects by dividing the game state into multiple dimension planes (object plane, attribute plane, relationship plane). Each plane handles specific aspects of the game state independently, allowing the system to manage diverse object types while maintaining accurate output through structured, modular processing of game information.
2Measurement precision
If the system processes comprehensive status information of multiple virtual application objects, then the decision accuracy is improved, but the computational complexity and processing time increase
Solution Approach 1:
The patent reduces computational complexity by segmenting comprehensive status information into three distinct dimension planes: object plane (basic attributes), attribute plane (detailed properties), and relationship plane (inter-object relations). This segmentation allows the neural network to process information in organized, manageable dimensions rather than handling all data as a single complex input.
Solution Approach 2:
The patent transforms the complex status information into a multi-dimensional plane structure, where each dimension represents a specific aspect of the game state. This dimensional organization converts unstructured comprehensive data into structured multi-dimensional inputs that the neural network can process more efficiently while maintaining high decision accuracy.
3Measurement precision
If the system uses detailed status information to determine output probabilities, then the accuracy of identifying target virtual application objects is improved, but the time required for processing increases
Solution Approach 1:
The patent segments the probability determination process by assigning different dimension planes to different processing stages. The object plane provides quick basic identification, the attribute plane adds detailed property analysis, and the relationship plane refines probabilities based on inter-object dynamics. This segmented approach enables accurate identification while reducing overall processing time through parallel dimension processing.
Data Source
AI summary
A method by a network device for outputting a virtual application object includes acquiring current status information of a plurality of virtual application objects in a virtual application, the current status information indicating that a virtual application object is in a known state or in an unknown state, constructing a virtual application object status plane based on the current status information of the plurality of virtual application objects, where the virtual application object status plane includes a region corresponding to each virtual application object, the region includes the current status information of the corresponding virtual application object, determining, based on the virtual application object status plane, output probabilities corresponding to a plurality of to-be-outputted virtual application objects, and determining, based the output probabilities corresponding to the plurality of to-be-outputted virtual application objects, a target virtual application object from the plurality of to-be-outputted virtual application objects.


