High-power millimeter wave radiation system applied to active denial system
A technology of active denial system and radiation system, applied in the direction of offensive equipment, weapon types, etc., can solve the problems of large microwave energy loss in transmission links, difficult practical application promotion, and large volume, so as to avoid beam transmission loss and achieve large-scale transmission. Effects of Angled Radiation Strike
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Embodiment 1
[0039] Embodiment 1: A high-power millimeter-wave radiation system applied to an active denial system, including a high-power millimeter-wave source 1, a mode converter 2, a secondary reflector 3, a primary reflector 4, a turntable 5, an auxiliary support 6 and a pitch Motor 7; high-power millimeter-wave source 1, mode converter 2, secondary reflector 3 and primary reflector 4 constitute the main body of the radiation system, and the positional relationship from top to bottom in the XOZ plane is as follows: primary reflector 4, secondary reflector 4 Reflector 3, mode converter 2, high-power millimeter-wave source 1; auxiliary bracket 6 is used to fix the relative positions of high-power millimeter-wave source 1, mode converter 2, secondary reflector 3 and main reflector 4; pitch motor 7 is integrated in The junction of the main reflector 4 and the auxiliary support 6; the inside of the turntable 5 is integrated with a motor capable of azimuth rotation, which is used to realize ...
Embodiment 2
[0040] Embodiment 2: On the basis of Embodiment 1, the high-power millimeter-wave source 1 is used to generate a high-power W-band millimeter-wave source; the mode converter 2 is connected to the output port of the high-power millimeter-wave source 1 for converting the high-power millimeter-wave The waveguide mode electromagnetic wave output by the wave source 1 is converted into a Gaussian beam mode electromagnetic wave; the secondary reflector 3 is used to receive and reflect the electromagnetic wave radiated by the mode converter 2; the main reflector 4 is used to receive and reflect the electromagnetic wave radiated by the secondary reflector 3 .
Embodiment 3
[0041] Embodiment 3: On the basis of Embodiment 1, the spatial position of the output port of the mode converter 2 is located at the non-focus position of the secondary reflector 3 and the main reflector 4.
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