Atmosphere remote sensing laser radar optical receiving device based on telescope arrays
A laser radar and optical receiving technology, which is used in measurement devices, climate sustainability, and re-radiation of electromagnetic waves. It can solve the problems of the upper limit of the size of large-diameter telescopes and the difficulty of processing, and increase the echo signal strength and effective detection range. Effect
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2015-09-09
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention relates to a laser radar, in particular to an optical receiving device for an atmospheric remote sensing laser radar based on a telescope array. Background technique
[0002] Atmospheric remote sensing lidar technology is an active real-time detection technology. Its basic principle is to emit a beam of high-quality laser light to the target atmosphere, use telescopes and other devices to receive backscattered echo signals of various particles, and pass optical components and The electronic device analyzes and compares the echo signals, and finally retrieves useful information such as the type, concentration, motion state and temperature of particles in the atmosphere. The main difficulty of lidar technology is that the intensity of the echo signal is too weak, which makes it have high requirements for laser pulse energy, telescope receiving area, optical components and electronic devices, which leads to high cost of lidar system. If you...
Examples
Embodiment Construction
[0022] The present invention is further analyzed below in conjunction with specific examples.
[0023] The basic lidar equation is
[0024] P ( r ) = CY ( r ) A r 2 β ( r ) T 2 ( r ) , - - - ( 2 )
[0025] In the formula, P(r) represents the intensity of the echo signal, C represents the system constant, including the energy of the emitted laser, the transmittance of the system, etc., Y(r) is the overlap factor between the emitted laser and the field of view of the telescope, and β(r) represents Backscatter coefficient, T 2 (r) refers to the atmospheric extinc...