All-time overall height atmospheric sounding and observing laser radar
A technology of atmospheric detection and laser radar, which is applied to measuring devices, climate sustainability, and radio wave measurement systems, etc. Difficult to launch synchronously and other problems to achieve the effect of improving detection ability and application range, convenient use and maintenance, and reliable work
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Embodiment 1
[0021] The lidar for full-height atmospheric detection at all-day time is composed of a laser emitting part 1, an optical receiving part 2, and a signal detecting part 3. Among them:
[0022] The optical receiving part 2 is composed of a low-altitude telescope 210, a first optical fiber 211, a motorized biaxial translation stage 212, an upper-altitude telescope 200, a second optical fiber 221, and a third optical fiber 231. The low-altitude telescope 210 is placed vertically, the electric dual-axis translation stage 212 is arranged in parallel at the focal plane of the low-altitude telescope 210, the optical fiber head at one end of the first optical fiber 211 is vertically installed in the center of the electric dual-axis translation stage 212, and the end face of the optical fiber head is located at the focal plane. On a plane; the high-altitude telescope 200 is placed vertically, 3-8 meters away from the low-altitude telescope 210, and the fiber ends of the second optical fiber...
Embodiment 2
[0038] The low-altitude telescope 210 or the high-altitude telescope 200 in Embodiment 1 adopts a reflecting telescope, a refracting telescope, a reflex telescope or a combined telescope.
Embodiment 3
[0040] The narrowband filter in Embodiment 1 adopts a composite filter, a birefringent filter, or an atomic filter.
[0041] The working process of the present invention is:
[0042] The 589nm laser emitted by the dual-wavelength transmitter of the laser emission part excites 80-110 km sodium layer fluorescence, and the echo light is focused to the third optical fiber entrance by the high-altitude telescope and sent into the sodium layer fluorescence channel to obtain 80-110 km sodium layer fluorescence. Sodium atom number density and fluctuation information; the 532nm laser emitted by the dual-wavelength transmitter excites 30-80 kilometers of atmospheric Rayleigh scattering, and the echo light is focused to the second fiber entrance by the high-altitude telescope, and then sent into the Rayleigh scattering channel to obtain 30- 80 kilometers of atmospheric density, temperature, fluctuations and other information; the 532nm laser emitted by the dual-wavelength transmitter also si...
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