Three-Mode Optical Sensing for AI-Guided Concentration Signals
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Solution Overview
Problem
Existing laser-based data transmission systems suffer from low operational reliability, complex design with moving elements, high noise susceptibility, and significant delays over long distances, leading to interference and signal disruption.
Innovation Solution
A three-mode device for concentration development, comprising an optical sensing unit with spherical sensitive elements, lasers, and artificial intelligence, which processes biological signals and electromagnetic fields to enhance concentration and immunity to noise, using switches and light signals to guide user focus.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Length of stationary object
If laser-based data transmission systems are used for long-distance communication, then information can be transmitted over hundreds or thousands of kilometres, but the delay in transmitting information increases to tenths of a second and operational reliability decreases
Solution Approach 1:
The patent divides the transmission system into multiple segments with repeaters positioned at intervals along the transmission path. Each repeater segment handles a shorter distance, reducing the delay and improving reliability of each segment, which collectively achieves long-distance transmission with maintained performance
Solution Approach 2:
The patent introduces repeaters as intermediary devices between the transmitter and receiver. These repeaters receive, regenerate, and retransmit signals, acting as mediators that maintain signal integrity over long distances and reduce cumulative delays compared to direct transmission
2Adaptability or versatility
If complex signal transmitters and receivers with multifunctional connection are used, then data transmission capability is enhanced, but the system complexity increases and operational reliability decreases
Solution Approach 1:
The patent implements repeaters that perform multiple functions including signal reception, regeneration, and retransmission within a single device. This multi-functionality reduces the need for separate specialized components, simplifying the overall system while maintaining enhanced data transmission capabilities
Solution Approach 2:
The repeaters are designed to automatically detect signal quality, regenerate signals without manual intervention, and adapt to transmission conditions. This self-service capability reduces system complexity by eliminating the need for complex external control and monitoring systems
3Length of stationary object
If repeaters are used for long-distance transmission, then transmission distance is extended, but the delay in transmitting information increases to tenths of a second
Solution Approach 1:
By dividing the long transmission path into shorter segments with repeaters, the patent reduces the delay accumulation in each segment. The total delay is distributed across multiple shorter intervals rather than accumulating over the entire long distance, managing the time loss more effectively
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The device improves operational reliability and noise immunity, enabling focused concentration on specific goals without delays, enhancing mental strength and goal implementation through wave synthesis principles.
Implementation Method 1
an optical sensing unit, the optical sensing unit comprising a plurality of one or more lenses capable of holding sensitive elements, wherein the plurality of sensitive elements are configured to sense a biological signal provided by a user in at least three operational modes, the signal being associated with a plurality of electromagnetic fields
Implementation Method 2
at least two lasers placed inside the device, wherein a first laser is constantly turned on during a second operation mode representing the emittance of a static light signal by one of the plurality of the lightning units; the second laser being connected to a motion sensor capable of turning on and off when a user is in a range proximity and representing the emittance of a repetitively-pulsed light signal by another lightning unit
Implementation Method 3
an optical emitting unit configured to emit the outgoing signal; wherein the optical emitting unit emits the outgoing signal in a form of at least an optical signal
Data Source
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AI summary
A device 100 for development of concentration, the device 100 comprising: an optical sensing unit, the optical sensing unit comprising a plurality of one or more lenses 201, 202 capable of holding sensitive elements, wherein the plurality of sensitive elements are configured to sense a biological signal provided by a user in at least three operational modes, three switches for switching between the plurality of operation modes; a plurality of lightning units configured to indicate each of the plurality of operation modes by emitting a predetermined light signal; a processing unit for processing information using artificial intelligence.