Resource Package Conversion via Server Intermediary
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Solution Overview
Problem
Existing information processing systems lack flexibility in sending different types of resource packages, as they often require specific resources to be available, and face high processing loads when handling large volumes of virtual item exchanges, with limited interaction efficiency and precision in recommending personalized resources.
Innovation Solution
A method and apparatus that utilize a first server to acquire a conversion rate from a second server, allowing the deduction of one type of resource to generate a resource package of another type equal in value, enabling the sending of resource packages without the initial resource type, and incorporating task requirements and media information to enrich interaction, while also recommending personalized coupons based on user data.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If the system requires specific resources to be available before sending resource packages, then the resource type consistency is maintained, but the flexibility in sending different types of resource packages is reduced
Solution Approach 1:
The patent introduces a server as an intermediary that manages resource packages and handles type conversions. The server receives resource package sending requests, determines the resource type based on the receiver's account type, and coordinates the transfer between different resource types (virtual currency and points), thereby enabling flexible sending without requiring the sender to manually manage resource type consistency
Solution Approach 2:
The system dynamically changes the resource type parameter based on the receiver's account characteristics. When sending a resource package, the system automatically adjusts whether to use virtual currency or points as the resource type according to the receiver's account type, enabling adaptive resource package sending without fixed resource type requirements
2Productivity
If the system handles large volumes of virtual item exchanges directly, then the interaction efficiency is maintained, but the processing load increases significantly
Solution Approach 1:
The patent segments the virtual item exchange process into distinct phases: the sender client initiates the transfer, the server determines resource types and manages the actual transfer, and the receiver client receives the items. This segmentation distributes processing load across multiple components, preventing any single system from bearing the full burden of high-volume exchanges
Solution Approach 2:
The server acts as an intermediary that absorbs and manages the processing load of resource type determination and conversion. By centralizing these complex operations on the server side, the system can handle large volumes of exchanges without overwhelming the sender or receiver clients, effectively managing processing load while maintaining high throughput
3Measurement precision
If the system provides generic resource recommendations, then the implementation simplicity is maintained, but the precision of resource recommendations is reduced
Solution Approach 1:
The patent applies local quality by providing personalized resource recommendations tailored to each user's specific characteristics. The server analyzes individual user data (preferences, behavior patterns, account type) to generate customized resource package recommendations, ensuring that each user receives recommendations specifically suited to their needs rather than generic suggestions
Solution Approach 2:
The system implements feedback mechanisms where user responses to recommendations, resource package transfer history, and account usage patterns are continuously analyzed. This feedback loop enables the server to refine and improve recommendation precision over time by learning from actual user behavior and preferences
Data Source
AI summary
The present application discloses an information processing method. The method includes: acquiring a resource package parameter determined by a sender client; invoking an interface with a second server, and acquiring a current conversion rate that is between the first-type resource and a second-type resource and is issued by the second server; calculating a quantity of second-type resources equal in value to the first quantity of first-type resources according to the conversion rate, and using the quantity as a second quantity; deducting the second quantity of second-type resources from a second-type resource account of the sender client, and generating at least one resource package, a sum of quantities corresponding to the at least one resource package being equal to the first quantity; and distributing the at least one resource package to at least one receiver client by using the link information.


