A mobile service network management platform
A service network and management platform technology, applied in the field of mobile network service and its security control, can solve problems such as unsatisfactory requirements, inability to intuitively and randomly adjust, etc., and achieve the effect of easy memory
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specific Embodiment approach 1
[0040] Embodiment 1: Mobile service network management platform, which includes the following equipment and system construction: unmanned aerial vehicle, an unmanned aircraft that utilizes radio remote control equipment and self-contained program control device to operate, and carries a camera, can Signal amplification, transmission, and switching equipment to expand the coverage of communication or wireless networks, or interference equipment that shields communication signals; the number depends on the coverage area and signal transmission power.
[0041] UAV network coverage monitoring system is a computer that can monitor the position of multiple UAVs in real time on the screen, and can control the suspended position and height of UAVs through coordinate points. Because it does not need high-precision flight, it Multiple drones can be controlled by one computer, and at the same time, the wireless network coverage area set on each drone can be viewed from the computer screen...
specific Embodiment approach 2
[0062] Specific embodiment 2: The difference between this embodiment and specific embodiment 1 is that the present invention also includes an alarm device, which is used to report to the total monitoring system when the difference between the depth data and the preset depth data is greater than the preset range. Sound the alarm signal.
[0063] The alarm signal can be a communication message that is sent to the general monitoring system to let the relevant personnel know that someone is opening the box.
[0064] The purpose of setting the preset range is to allow a certain error in the depth data, otherwise, if a complete match is required, it may be difficult to determine accurate depth data with the naked eye.
[0065] Other steps and parameters are the same as those in Embodiment 1.
specific Embodiment approach 3
[0066] Embodiment 3: This embodiment differs from Embodiment 1 or Embodiment 2 in that: when the input mechanism moves telescopically in the panel, it can stay at any position. For example, the above-mentioned stretching structure is achieved by setting a pull rod on the input mechanism. It is conceivable that the stretching in this way can make the input mechanism stop at any position on the way.
[0067] On the contrary, it is also possible to set a gear that is allowed to stay, for example, a gear is set every 1 cm, and the input mechanism can only stay in a specific gear. It is also very simple to realize such a mechanical structure, such as the push-push structure, that is, the input mechanism enters the next gear by pressing, and then presses to return or go to the next gear. This structure is similar to a push-type ballpoint pen. Belong to common structure, the present invention does not describe in detail.
[0068] The advantages and disadvantages of these two methods...
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