Automated Speech Translation System Using Brain Language Areas
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Solution Overview
Problem
Current language translation systems require external devices or software that are cumbersome and limited in language support, failing to automatically translate speech into a language understandable by the recipient's brain, leading to communication barriers across the globe.
Innovation Solution
An automated speech translation system that identifies the recipient's natural language by analyzing brain language areas using electromagnetic radiation and a 'Human Brain Language Areas Knowledge Base' to facilitate real-time translation without the need for interpreters or devices.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If external translation devices or software are used, then translation capability is provided, but device complexity and portability are worsened
Solution Approach 1:
The patent introduces an intermediary translation system that acts as a mediator between speakers of different languages. The system includes a language barrier removal system with translation modules that receive input from one language and output translated content in another language, serving as an intermediate communication bridge without requiring complex external devices at the user end
Solution Approach 2:
The translation system is designed to support multiple languages simultaneously through a universal translation platform. The system can translate between any pair of languages in the supported set, providing multi-functional capability that eliminates the need for separate translation devices for different language pairs
2Device complexity
If limited language support is provided, then device complexity is reduced, but adaptability is worsened
Solution Approach 1:
The translation system employs dynamic language support that can adapt to different language pairs based on user needs. The system includes configurable translation modules that can be activated or deactivated based on the required language combination, allowing the system to scale its language support dynamically without maintaining constant complexity for all possible language pairs
Solution Approach 2:
The translation system is divided into modular translation units, each handling specific language pairs or language families. This segmentation allows the system to provide extensive language support by combining multiple specialized modules rather than requiring a single complex universal translator, maintaining system simplicity while expanding adaptability
3Speed
If real-time translation is implemented, then communication speed is improved, but processing complexity is worsened
Solution Approach 1:
The system performs preliminary processing of translation resources and language models before real-time translation is needed. Translation dictionaries, language models, and contextual information are pre-loaded and prepared, allowing the real-time translation process to rely on retrieved and matched content rather than generating translations from scratch, thus reducing real-time processing complexity while maintaining speed
Data Source
AI summary
The present invention is an "Automated Speech Translation System using Human Brain Language Areas Comprehension Capabilities". It discloses a method to address the most common variation in the world, which is communication gap between people of different ethnicity. Imagine a world where we can communicate with our natural language to everyone without the need of human translators, interpreters, hand-held device and language translation books. In order to facilitate language translation, this present invention recognizes the speech in voice pitches, collects the language comprehensive information from each recipient's brain language areas within the audible range and sends it to "voice processing center" for analyzing. Then, it translates the collected voice pitches of speech to natural language of recipient(s) by using language dictionaries database. The translated language is retransmitted in audible frequency to one or plurality of recipients where the brain language areas of one or plurality of recipients can comprehend.


