A variant of computer modeling of a multichannel mirror-lens system (lens) made of transparent plastic in several spectral ranges for remote devices is considered. The optical system operates using two radiation receivers that are sensitive in the visual and infrared ranges of the spectrum
A variant of computer simulation of a multichannel mirror-lens system (lens) made of a material transparent in several spectral ranges for remote sensing of the Earth by unmanned mini-vehicles is considered. The optical system operates using two radiation receivers that are sensitive in three spectral ranges.
twochannel catadioptric system of a navigation video camera of a miniature drone, designed to work in the visual and thermal imaging ranges of the spectrum with two radiation receivers simultaneously, is made of materials that are transparent in these ranges of the spectrum.
Three-channel mirror-lens system of the underwater minidrone camera, designed to replace two or more optical systems with a multichannel (or multispectral) system made of a material transparent in the several ranges of the spectrum, was considered. This system is designed to work with multi-channel radiation receivers.
Considered a dual mirror-lens system camera of nanodrones designed to replace two or more optical systems with a multichannel (or multispectral) system made of a transparent material in the range of several spectrum regions. This system works both with two radiation receivers after channel separation and with a multi-channel radiation receiver.
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