Context-Aware Ideograph Insertion System for Mobile Texting
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Solution Overview
Problem
Users face difficulties in quickly locating and inserting ideographs, such as emojis, emoticons, or stickers, into text communications to convey emotions or concepts within communication applications, due to the lack of standards and the need for manual searching through large libraries.
Innovation Solution
A system that monitors and analyzes text data entered by users to automatically retrieve and display suitable ideographs, allowing them to be inserted into messages without immediate user action, utilizing a processor-readable medium with executable instructions to recognize indicators and retrieve graphical representations of meanings.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If users manually search through large libraries of ideographs to find suitable emojis, emoticons, or stickers, then they can locate and insert ideographs into communications, but the process becomes time-consuming and difficult
Solution Approach 1:
The system performs preliminary analysis of the user's text input to identify keywords and contextual indicators before the user needs to insert ideographs. By pre-processing the text and preparing relevant ideograph suggestions in advance, the system eliminates the need for manual searching through large libraries, thus resolving the contradiction between ease of operation and time loss.
Solution Approach 2:
The system automatically analyzes the user's text, identifies appropriate ideographs based on contextual keywords, and presents suggestions without requiring the user to manually search or select from extensive libraries. This self-service approach allows the system to handle the time-consuming search task autonomously, improving ease of operation while minimizing time loss.
2Adaptability or versatility
If a large library of ideographs is provided to users, then more expression options are available, but the complexity of locating and managing these ideographs increases
Solution Approach 1:
The system introduces an intermediary processing layer that automatically analyzes user text and matches contextual keywords with appropriate ideographs from the large library. This intermediary function filters and organizes the vast ideograph collection based on real-time text analysis, maintaining high adaptability while reducing the complexity of library management for users.
Solution Approach 2:
The system autonomously handles the complexity of managing and navigating the large ideograph library by automatically analyzing text context and retrieving relevant ideographs. This self-service capability allows the system to maintain a comprehensive, versatile ideograph collection without requiring users to manually manage or search through the complexity of the library.
3Productivity
If users are required to search and select ideographs manually, then they have control over which ideographs are inserted, but the communication process becomes less efficient
Solution Approach 1:
The system performs preliminary text analysis and ideograph matching automatically before the user needs to insert ideographs. By pre-identifying relevant ideographs based on contextual keywords and presenting them for selection, the system significantly improves communication efficiency while maintaining appropriate user control through the selection interface.
Solution Approach 2:
The system provides automated ideograph suggestions based on real-time analysis of user text input, creating a feedback loop where the system responds to user text with relevant ideograph recommendations. This feedback mechanism enhances productivity by automating the ideograph selection process while allowing users to review and choose from contextually relevant options, balancing automation with user control.
Data Source
AI summary
A non-transitory processor readable medium storing processor executable instructions is described. The processor executable instructions, when executed by a processor, cause the processor to: receive application data indicative of text from a user device via a communications network; analyze the application data for one or more indicator being at least a portion of the text entered into the application and having one or more meaning; retrieve one or more selected ideograph from a database populated with ideographs received from and associated with one or more advertisers, the one or more selected ideograph being indicative of a graphical representation of the one or more meanings of the one or more indicator; transmit the one or more selected ideograph to the user device via the communications network; and charge a fee to at least one advertiser associated with the one or more selected ideograph.


