AI-Driven Actuating Unit for Nanosecond-Precision Skill Replication
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Solution Overview
Problem
Existing technologies lack the capability to replicate the ultra-high performance skills of professionals such as first-class chefs and doctors, and provide autonomous driving solutions that adapt to real-time conditions with precision and accuracy.
Innovation Solution
A control device equipped with an actuating unit, information acquisition unit, and control unit utilizing AI to assist human operations, enabling ultra-high performance tasks like cooking, surgery, and autonomous driving by acquiring and processing vast amounts of sensory data every nanosecond.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If existing technologies are used for autonomous driving and professional skill replication, then basic automation functions can be achieved, but ultra-high performance skills of professionals cannot be replicated and real-time adaptation precision is insufficient
Solution Approach 1:
The patent applies copying by creating virtual models of professional skills through AI learning. The system captures and replicates the nuanced decision-making patterns, operational techniques, and judgment processes of professionals (chefs, doctors, drivers) by training AI algorithms on their performance data, enabling ultra-high performance skill replication that goes beyond conventional automation
Solution Approach 2:
The patent utilizes parameter changes by processing sensory information at nanosecond intervals and dynamically adjusting control parameters in real-time. The AI system modifies operational parameters based on continuously acquired sensory data, enabling adaptive precision that matches professional human performance across varying conditions
2Speed
If conventional control systems are used, then basic automation can be achieved, but ultra-high performance speed control and real-time adaptation cannot be realized
Solution Approach 1:
The patent replaces conventional mechanical control systems with AI-based intelligent control. The system substitutes traditional feedback control mechanisms with neural network-based decision-making that processes sensory inputs and generates control outputs at nanosecond intervals, achieving both ultra-high speed response and reliable real-time adaptation
Solution Approach 2:
The patent implements continuous feedback by acquiring sensory information at nanosecond intervals and using AI to process this feedback in real-time. The system constantly monitors environmental changes and adjusts its control actions based on this feedback loop, enabling reliable real-time adaptation to dynamic conditions
3Measurement precision
If AI and ultra-high performance information acquisition are implemented, then precise assistance and ultra-high performance speed control can be achieved, but system complexity increases
Solution Approach 1:
The patent applies universality by using a single AI-based control system that can perform multiple functions across different applications (autonomous driving, cooking assistance, surgical assistance). The core AI engine and information acquisition unit serve universal purposes, reducing the need for separate specialized systems for each application domain
Data Source
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AI summary
Provided is a control device including an actuating unit that moves an object; an information acquisition unit that acquires a plurality of pieces of information; and a control unit that controls the actuating unit by using the information acquired by the information acquisition unit and AI. The control unit may control the actuating unit in units of 1/1 billion seconds by using the information and AI, and the actuating unit may drive a vehicle. The actuating unit may be configured to be worn by a human, and the control unit may cause the actuating unit to assist a motion of the human who drives a vehicle. The control unit may control the actuating unit by using the information and AI, and cause the actuating unit to reproduce a dish, perform surgery, or perform a factory work.