Absolute Velocity Calibration for Electromagnetic Wave Precision

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Solution Overview

Problem

Current electromagnetic devices rely on 'relative' velocities for measurement and positioning, leading to approximation errors due to the exclusion of 'absolute' velocities, which are invariant to the reference frame and crucial for accurate electromagnetic wave propagation, resulting in reduced performance and precision.

Innovation Solution

A system and method that utilizes comprehensive 'absolute' velocity information to measure and calibrate devices, incorporating modules for absolute velocity measurement, calibration, and computation to improve accuracy and performance by accounting for the real origin of electromagnetic waves and precise timings.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Measurement precision

If relative velocity is used for electromagnetic measurement and positioning, then device complexity is reduced and ease of operation is improved, but measurement precision and positioning accuracy deteriorate due to approximation errors

Engineering Contradiction:
Improvepositioning accuracyVSAvoidsystem complexity
Core Design Contradiction:
Measurement precisionVSDevice complexity

Solution Approach 1:

The patent changes the fundamental parameter from relative velocity to absolute velocity in electromagnetic wave propagation calculations. By incorporating absolute velocity information (velocity relative to the real origin of electromagnetic waves) into the Doppler effect formula and positioning calculations, the system achieves higher measurement precision and positioning accuracy while maintaining operational simplicity through automated velocity measurement and calibration modules

Inventive Principle:
Principle #35Parameter changes

2Measurement precision

If relative velocity is used for electromagnetic wave propagation, then ease of operation is improved, but measurement precision deteriorates due to exclusion of absolute velocity information

Engineering Contradiction:
Improvefrequency measurement accuracyVSAvoidoperational simplicity
Core Design Contradiction:
Measurement precisionVSEase of operation

Solution Approach 1:

The system employs self-service mechanisms where the absolute velocity measurement module automatically measures and records absolute velocity information without requiring manual intervention. The calibration module automatically determines the real origin of electromagnetic waves and adjusts measurements accordingly, maintaining ease of operation while significantly improving frequency measurement accuracy through comprehensive absolute velocity data inclusion

Inventive Principle:
Principle #25Self-service

3Manufacturing precision

If comprehensive absolute velocity information is measured and utilized, then measurement precision and positioning accuracy are improved, but device complexity increases due to additional measurement and calibration modules

Engineering Contradiction:
Improvepositioning precisionVSAvoidsystem structure complexity
Core Design Contradiction:
Manufacturing precisionVSDevice complexity

Solution Approach 1:

The patent implements multi-functional modules that serve multiple purposes: the absolute velocity measurement module not only measures velocity but also records timing information and provides data for calibration. The calibration module simultaneously determines the real origin of electromagnetic waves, adjusts positioning calculations, and optimizes measurement accuracy. This universal approach improves positioning precision while managing system complexity through integrated functionality

Inventive Principle:
Principle #6Universality (Multi-functionality)

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

This approach enhances the accuracy and performance of electromagnetic measurement, detection, and positioning by providing a more accurate picture of electromagnetic wave propagation, reducing errors and improving precision, such as minimizing positioning errors from 1.5 nm to negligible levels.

Implementation Method 1

the following formula in Asymmetry Theory accurately describes the Dopler effect of electromagnetic waves in a vacuum: fo(to) = fs(ts) * (c - νs(t)) / (c - νo(t))

Methodology Applied
Scientific EffectDoppler effect: Doppler Effect

Data Source

PatentUS12061122B2Method and system utilizing absolute velocity to improve the performance of electromagnetic devices
Publication Date: 2024.08.13 CHEN QIAN
  • US12061122B2 patent drawing
  • US12061122B2 patent drawing
  • US12061122B2 patent drawing

AI summary

The method and system utilized the measurement of the “absolute” velocities or equivalent parameters of the electromagnetic devices and objects, which are defined as the velocities relative to the real origin of the electromagnetic wave, to accurately picture their impacts on the propagation and measurement of the electromagnetic wave and compensate for these impacts correspondingly. The comprehensive information of the “absolute” velocities, including both the measured values and the calculated right timings, is utilized to calibrate and control the electromagnetic device and calculate the results to improve performance and accuracy. The method and system include the absolute velocity measurement, the calibration and control of the device, and the computation of the right timings and results.