Method and framework for recording photopic-vision substance relevant electromagnetic wave

A recording method and electromagnetic wave technology, which is applied in the field of electromagnetic wave measurement technology and analysis, can solve the problems of material-related electromagnetic wave signal accuracy, inconsistency of radiated electromagnetic reflection waves, signal interference, etc., and achieve the effect of eliminating environmental signal interference

Active Publication Date: 2011-11-09
叶 文俊 +1
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, the current technology is not completely correct and controllable due to external energy, disordered and disordered signal sources, coupled with the inconsistency of radiation electromagnetic reflectio...

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  • Method and framework for recording photopic-vision substance relevant electromagnetic wave
  • Method and framework for recording photopic-vision substance relevant electromagnetic wave
  • Method and framework for recording photopic-vision substance relevant electromagnetic wave

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Embodiment Construction

[0025] The present invention provides a photopic material-related electromagnetic wave recording method and framework, and proposes a comparative material-related electromagnetic wave recording method for the problems encountered in the current technology. Using a low-noise amplification electronic circuit, as well as an environmental signal removal signal processing circuit and analysis processing program code, a dedicated measurement framework for recording material-related electromagnetic waves. see figure 1 , which is a schematic diagram of the photopic material-related electromagnetic wave recording architecture. The overall architecture includes electromagnetic wave signal measurement units 11, 12, signal amplification unit 13, signal processing circuit 14, and data analysis and processing device 15. The result of the present invention provides the recording of all material-related electromagnetic wave signals, and the material-related electromagnetic wave recording fram...

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Abstract

The invention provides a new method and framework for recording a substance relevant electromagnetic wave, in particular a method and framework for recording a photopic-vision substance relevant electromagnetic wave. According to the invention, by the adoption of a measuring device, a framework and a measuring method, a weak measurement signal is acquired and amplified, and an environmental background electromagnetic wave signal is removed to obtain a pure substance relevant electromagnetic wave signal, and thus the optimal primary signal waveform and data record of the substance relevant electromagnetic wave can be provided. When the method and the framework are used for measuring the substance relevant electromagnetic wave, environmental background signal interference can be eliminated, and the substance relevant electromagnetic wave signal can be measured more accurately.

Description

technical field [0001] The present invention relates to electromagnetic wave measurement technology and analysis method, in particular to a material-related electromagnetic wave recording method and framework for photopic-viewing material-related electromagnetic wave waveform and energy obtained by using electromagnetic wave measurement technology and measuring instruments. Background technique [0002] Because the relevant electromagnetic energy generated by the general material itself is very small, most current applications use external energy, that is, a disordered signal source. After radiating the material to produce a large electromagnetic radiation reflection wave, the electromagnetic radiation reflection is received The waves are then recorded and analyzed, and as a result, the electromagnetic properties of the substance itself are obtained. However, the current technology is not completely correct and controllable due to external energy, disordered and disordered s...

Claims

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Application Information

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IPC IPC(8): G01R29/08G01N27/00
Inventor 叶文俊沈勋灿
Owner 叶 文俊
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