Airborne dropping type full-automatic air sounding pod device and detection method
A fully automatic, pod-based technology, applied in the direction of instruments, etc., can solve the problems of low detection cost, no high integration, limited aircraft load, etc., and achieve high versatility
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Embodiment 1
[0040] Such as Figure 1-Figure 6 As shown, a fully automatic sounding pod equipment with an on-board drop-off in this embodiment includes: pod 1, ejection device 2, satellite signal repeater 3, sounding signal receiving antenna 4, sounding activation and reception The device 5 and the pod control system 6; the ejection device 2 is installed in the pod 1 and used to accommodate the radiosonde 300 and eject the radiosonde 300 out of the pod 1; the satellite signal forwarding device 3 is installed in The top of the pod 1 is used to forward the received satellite signals to the inside of the pod after being enhanced; the sounding activation and receiving device 5 is installed in the pod 1 for receiving and processing satellite signals, when The aircraft 400 activates and detects the radiosonde 300 after reaching the scheduled launch point, and tracks, receives and adjusts the radiosonde 300 signal; the radiosonde signal receiving antenna 4 is installed on the bottom 1 of the pod 1 ...
Embodiment 2
[0051] A drop-down sounding method of the pod device described in Embodiment 1, including the following steps:
[0052] S1, install the radiosonde into the ejection device;
[0053] S2: The satellite signal forwarding device enhances the received pod ephemeris information and forwards it into the pod for use by the equipment in the pod;
[0054] S3: After the aircraft arrives at the scheduled launch point, the pod control system resets itself and rotates the closest ejection tube loaded with the radiosonde to the ejection position according to the principle of proximity;
[0055] S4: After the projectile tube loaded with the radiosonde enters the position to be ejected, the sounding activation and receiving device activates the radiosonde in the position to be ejected;
[0056] S5: After the radiosonde enters the launch state, the pod control system controls the ejection device to eject the radiosonde out of the pod;
[0057] S6, the sounding instrument transmits the detection data back ...
Embodiment 3
[0061] In addition to one or more of the solutions in the first embodiment, the airborne down-throwing fully automatic sounding pod equipment of this embodiment also improves the ejection device 2 in the pod 1 and the launching door 25. Wherein, the pod 1 is provided with a launching cabin door 25 and a door steering gear 26 that controls the opening or closing of the launching cabin door 25, and the launching cabin door 25 is installed to detect the limit position of the door switch respectively. The cabin door open position sensor and the cabin door closed position sensor; the pod control system 6 first controls the door steering gear 26 to open the door after the radiosonde enters the release state, and when the release door When the 25 open position sensor detects that the door is opened to the extreme position, it controls the ejection device 2 to eject the radiosonde out of the pod. Specifically, when the pod control system 6 issues an ejection command, it first controls ...
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