Collector for 5G intelligent transmission
By integrating vertical vibration detection and warning control functions in the collector, timely reminding of the fan blade status of the induced fan blade is solved, and the problem of long signal transmission time in the prior art is solved, which leads to the damage and delay of the fan blade, and improves the convenience of the collector.
Patent Information
- Application Number
- CN202422062358.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-23
AI Technical Summary
In the prior art, when the fan blade of the induced fan is damaged, it takes a long time to transmit the signal collected through the collector to the analysis terminal, resulting in delays in the judgment of the condition of the fan blade, and further damage to the fan blade.
A 5G intelligent transmission collector is designed, including a vertical vibration detection device, a vertical reference device, a vertical comparison device, a warning control device and a vibration warning device. Through these components, these components detect and compare the vibration signals and reference signals of the induced fan, and output warning control signals to control the opening and closing of the warning light, and promptly prompt the staff of the fan blade.
The vibration warning device promptly warns the staff of the vibration of the induction fan, reduces the delay time of fan blade damage, and improves the convenience of using the collector.
Smart Images

Figure CN222912814U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of collectors, in particular to a collector for 5G intelligent transmission. Background Technique
[0002] A collector refers to a device used to collect data from various sensors and send it to an analysis terminal for analysis.
[0003] In the prior art, a quality detection system for the fan blades of an induced draft fan needs to use a collector and a supporting sensor. When the fan blades of the induced draft fan are damaged, it is easy to cause an increase in the vibration amplitude of the induced draft fan. The collector collects the vibration condition signal and the fan blade rotation speed signal of the induced draft fan collected by the sensor, and sends the signal to the analysis terminal through 5G transmission technology to analyze the condition of the induced draft fan blades.
[0004] When the fan blades are damaged, the time taken to collect the signal by the collector and transmit it to the analysis terminal for analysis is relatively long, which is likely to cause delays in the staff's judgment of the fan blade condition, and further damage to the fan blades. Content of the Utility Model
[0005] In order to improve the convenience of using the collector and timely prompt the staff about the state of the fan blades, the utility model provides a collector for 5G intelligent transmission.
[0006] The collector for 5G intelligent transmission provided by the utility model adopts the following technical solutions:
[0007] A collector for 5G intelligent transmission includes a vertical vibration detection device, a vertical reference device, a vertical comparison device, a warning control device, and a vibration warning device. The vertical vibration detection device is used to detect the physical quantity of vibration in the vertical direction and convert it into a vertical vibration signal. The vertical reference device is used to provide a vertical reference signal. The vertical comparison device is connected to the vertical vibration detection device and the vertical reference device to receive the vertical vibration signal and the vertical reference signal and output a vertical comparison signal. The warning control device is connected to the vertical comparison device to receive the vertical comparison signal and output a warning control signal. The vibration warning device is connected to the warning control device to receive the warning control signal and respond to the warning control signal to control the opening and closing of the warning light;
[0008] When the vertical vibration signal is greater than the vertical reference signal, the vertical comparison device outputs a high-level vertical comparison signal. The warning control device receives the high-level vertical comparison signal and outputs a high-level warning control signal. The vibration warning device receives the high-level warning control signal and controls the warning light to start. When the vertical vibration signal is not greater than the vertical reference signal, the vertical comparison device outputs a low-level vertical comparison signal. The warning control device receives the low-level vertical comparison signal and outputs a low-level warning control signal. The vibration warning device receives the low-level warning control signal and controls the warning light to turn off.
[0009] By adopting the above technical solution, the current vibration condition of the induced draft fan is shown through the vibration warning device, so as to warn the staff through the warning light when the vibration amplitude of the induced draft fan is too large, and then timely prompt the staff of the state of the fan blade, improving the convenience of using the collector.
[0010] Optionally, it further includes a rotation speed detection device and a rotation state device. The rotation speed detection device is used to detect the physical quantity of the rotation speed of the fan blade and convert it into a rotation speed detection signal. The rotation state device is connected to the rotation speed detection device to receive the rotation speed detection signal and respond to the rotation speed detection signal to control the brightness intensity of the rotation speed light.
[0011] When the rotation speed of the fan blade is relatively fast, the rotation speed detection device outputs a high-level rotation speed detection signal. The rotation state device receives the high-level rotation speed detection signal and emits a relatively bright rotation speed light. When the rotation speed of the fan blade is relatively slow, the rotation speed detection device outputs a low-level rotation speed detection signal. The rotation state device receives the low-level rotation speed detection signal and emits a relatively dim rotation speed light.
[0012] By adopting the above technical solution, the rotation speed of the fan blade of the induced draft fan is shown through the rotation state device, and the magnitude of the rotation speed is shown through the brightness degree of the rotation speed light, so as to timely remind the staff of the rotation condition of the fan blade of the induced draft fan, improving the convenience of using the collector.
[0013] Optionally, the vertical reference device includes a vertical adjustable module and a vertical fixed module. The vertical adjustable module is used to adjust the magnitude of the output vertical reference signal.
[0014] By adopting the above technical solution, the magnitude of the output vertical reference signal is adjusted through the vertical adjustable module, so that it is convenient for the staff to adjust a vertical reference signal suitable for the actual situation according to the actual situation, and further improves the convenience of using the collector.
[0015] Optionally, the vertical reference device further includes a vertical rotation speed module. The vertical rotation speed module is used to detect the brightness intensity of the rotation speed light and output a vertical rotation speed signal to the vertical adjustable module.
[0016] When the rotational speed light is relatively bright, the vertical rotational speed module outputs a high-level vertical rotational speed signal, and the vertical reference device receives the high-level vertical rotational speed signal and outputs a high-level vertical reference signal; when the rotational speed light is relatively dim, the vertical rotational speed module outputs a low-level vertical rotational speed signal, and the vertical reference device receives the low-level vertical rotational speed signal and outputs a low-level vertical reference signal.
[0017] By adopting the above technical solution, the rotational speed condition of the induced draft fan blade is fed back into the vertical reference signal through the vertical rotational speed module, so as to dynamically adjust the magnitude of the vertical reference signal according to the rotational speed condition of the induced draft fan blade, thereby improving the accuracy of the vertical reference signal.
[0018] Optionally, it further includes a horizontal vibration detection device, a horizontal reference device, a horizontal comparison device, and a vibration logic device. The horizontal vibration detection device is used to detect the vibration physical quantity in the horizontal direction and convert it into a horizontal vibration signal. The horizontal reference device is used to provide a horizontal reference signal. The horizontal comparison device is connected to the horizontal vibration detection device and the horizontal reference device to receive the horizontal vibration signal and the horizontal reference signal and output a horizontal comparison signal. The vibration logic device is connected to the vertical comparison device and the horizontal comparison device to receive the vertical comparison signal and the horizontal comparison signal and output a vibration logic signal to the warning control device;
[0019] When the horizontal vibration signal is greater than the horizontal reference signal, the horizontal comparison device outputs a high-level horizontal comparison signal. When the horizontal vibration signal is not greater than the horizontal reference signal, the horizontal comparison device outputs a low-level horizontal comparison signal;
[0020] When the vertical comparison device outputs a high-level vertical comparison signal or the horizontal comparison device outputs a high-level horizontal comparison signal, the vibration logic device receives the high-level vertical comparison signal or the high-level horizontal comparison signal and outputs a high-level vibration logic signal to the warning control device.
[0021] By adopting the above technical solution, the vibration condition of the induced draft fan is detected by the cooperation of the horizontal vibration detection device and the vertical vibration detection device, thereby improving the accuracy of the detection of the vibration condition of the induced draft fan, and then being able to timely warn the staff of the blade state through warning lights, improving the convenience of using the collector.
[0022] Optionally, the horizontal reference device includes a horizontal adjustable module and a horizontal fixed module, and the horizontal adjustable module is used to adjust the magnitude of the output horizontal reference signal.
[0023] By adopting the above technical solution, the magnitude of the output horizontal reference signal is adjusted by the horizontal adjustable module, so as to facilitate the staff to adjust a horizontal reference signal suitable for the actual situation according to the actual situation, thereby improving the convenience of using the collector.
[0024] Optionally, the horizontal reference device further includes a horizontal rotation speed module, which is configured to detect the brightness intensity of the rotation speed light and output a horizontal rotation speed signal to the horizontally adjustable module;
[0025] When the rotation speed light is relatively bright, the horizontal rotation speed module outputs a high-level horizontal rotation speed signal, and the horizontal reference device receives the high-level horizontal rotation speed signal and outputs a high-level horizontal reference signal; when the rotation speed light is relatively dim, the horizontal rotation speed module outputs a low-level horizontal rotation speed signal, and the horizontal reference device receives the low-level horizontal rotation speed signal and outputs a low-level horizontal reference signal.
[0026] By adopting the above technical solution, the rotation speed condition of the induced draft fan blade is fed back to the horizontal reference signal through the horizontal rotation speed module, so as to dynamically adjust the magnitude of the horizontal reference signal according to the rotation speed condition of the induced draft fan blade, thereby improving the accuracy of the horizontal reference signal.
[0027] Optionally, it further includes a state logic device, a state control device and a state display device. The state logic device is connected to the vertical vibration detection device and the horizontal vibration detection device to receive the vertical vibration detection signal and the horizontal vibration detection signal and output a state logic signal. The state control device is connected to the state logic device to receive the state logic signal and output a state control signal. The state display device is connected to the state control device to receive the state control signal and respond to the state control signal to control the on / off of the state light;
[0028] Only when the vertical vibration detection device outputs a high-level vertical vibration detection signal and the horizontal vibration detection device outputs a high-level horizontal vibration detection signal, the state logic device outputs a high-level state logic signal. The state control device is connected to the state logic device to receive the high-level state logic signal and output a high-level state control signal. The state display device receives the high-level state control signal and controls the state light to start.
[0029] By adopting the above technical solution, the working states of the vertical vibration detection device and the horizontal vibration detection device are shown through the state display device, so that when the vertical vibration detection device or the horizontal vibration detection device does not work properly, the state light is controlled to turn off through the state display device to warn the staff, thereby improving the convenience of using the collector.
[0030] Optionally, it further includes a protection device, which is used to protect the rotation speed detection device and the rotation state device.
[0031] By adopting the above technical solution, the rotation speed detection device is protected by the protection device, and the rotation state device is protected when the fan blade rotates at a high speed, thereby reducing the situation that the rotation state device is damaged due to the excessive rotation speed detection signal flowing through the rotation state device, and further improving the stability of the collector during use.
[0032] Optionally, the vertical vibration detection device includes an acceleration detection module and a comparison module. The acceleration detection module is used to detect the acceleration signal in the vertical direction and convert it into a vertical vibration detection signal. The comparison module is used to compare with the acceleration detection module and protect the acceleration detection module.
[0033] By adopting the above technical solution, the acceleration information of the object in the vertical direction is detected by the acceleration detection module, and the acceleration information is used as the vertical vibration detection signal. The size of the vertical vibration detection signal is adjusted by the comparison module, so that the vertical vibration detection signal corresponds to the vibration condition of the induced draft fan.
[0034] In summary, the present utility model includes at least one of the following beneficial technical effects:
[0035] 1. The current vibration condition of the induced draft fan is shown by the vibration warning device, so that when the vibration amplitude of the induced draft fan is too large, the staff is warned by the warning light, and further the state of the fan blade is timely prompted to improve the convenience of using the collector;
[0036] 2. The rotation speed of the fan blade of the induced draft fan is shown by the rotation state device, and the size of the rotation speed is shown by the brightness of the rotation speed light, so that the staff is timely reminded of the rotation condition of the fan blade of the induced draft fan, and the convenience of using the collector is improved;
[0037] 3. The rotation speed condition of the fan blade of the induced draft fan is fed back to the vertical reference signal by the vertical rotation speed module, so that the size of the vertical reference signal is dynamically adjusted according to the rotation speed condition of the fan blade of the induced draft fan, and further the accuracy of the vertical reference signal is improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] Figure 1 It is a circuit schematic diagram of a collector for 5G intelligent transmission.
[0039] The names of the parts referred to by the respective numerical labels in the above drawings are as follows: 10, vertical vibration detection device; 101, acceleration detection module; 102, comparison module; 11, vertical reference device; 111, vertically adjustable module; 112, vertical fixing module; 113, vertical rotation speed module; 12, vertical comparison device; 13, warning control device; 14, vibration warning device; 15, rotation speed detection device; 16, rotation state device; 17, protection device; 20, horizontal vibration detection device; 21, horizontal reference device; 211, horizontally adjustable module; 212, horizontal fixing module; 213, horizontal rotation speed module; 22, horizontal comparison device; 23, vibration logic device; 30, state logic device; 31, state control device; 32, state display device. Detailed implementation manners
[0040] The present utility model will be further described in detail below in conjunction with the drawings and embodiments.
[0041] An embodiment of the present utility model discloses a collector for 5G intelligent transmission. Refer to Figure 1 , a collector for 5G intelligent transmission includes a vertical vibration detection device 10, a vertical reference device 11, a vertical comparison device 12, a horizontal vibration detection device 20, a horizontal reference device 21, a horizontal comparison device 22, a vibration logic device 23, a warning control device 13, a vibration warning device 14, a state logic device 30, a state control device 31, a state display device 32, a rotation speed detection device 15, a rotation state device 16, and a protection device 17. The vertical vibration detection device 10 is used to detect the vibration physical quantity in the vertical direction and convert it into a vertical vibration detection signal. The vertical reference device 11 is used to provide a vertical reference signal. The vertical comparison device 12 is used to compare the vertical vibration detection signal and the vertical reference signal and output a vertical comparison signal. The horizontal vibration detection device 20 is used to detect the vibration physical quantity in the horizontal direction and convert it into a horizontal vibration detection signal. The horizontal reference device 21 is used to provide a horizontal reference signal. The horizontal comparison device 22 is used to compare the horizontal vibration detection signal and the horizontal reference signal and output a horizontal comparison signal. The vibration logic device 23 is used to output a vibration logic signal according to the magnitudes of the vertical comparison signal and the horizontal comparison signal. The warning control device 13 is used to output a warning control signal according to the magnitude of the vibration logic signal. The vibration warning device 14 is used to control the opening and closing of the warning light according to the warning control signal.
[0042] The state logic device 30 is used to output a state logic signal according to the magnitudes of the vertical comparison signal and the horizontal comparison signal. The state control device 31 is used to output a state control signal according to the magnitude of the state logic signal. The state display device 32 is used to control the opening and closing of the state light according to the state control signal.
[0043] The rotational speed detection device 15 is used to detect the physical quantity of rotational speed and convert it into a rotational speed detection signal. The rotational state device 16 is used to control the brightness intensity of the rotational speed light according to the magnitude of the rotational speed detection signal. The protection device 17 is used to protect the rotational speed detection device 15 and the rotational state device 16.
[0044] The vertical vibration detection device 10 includes an acceleration detection module 101 and a comparison module 102. The acceleration detection module 101 is used to detect the physical quantity of acceleration in the vertical direction and convert it into a vertical vibration detection signal. The acceleration detection model includes a chip U1. In this embodiment, the chip U1 uses a broadband acceleration sensor with the model number EAG01-100. The comparison module 102 includes a resistor R3.
[0045] The vertical reference device 11 includes a vertical adjustable module 111, a vertical fixed module 112, and a vertical rotational speed module 113. The vertical rotational speed module 113 is used to detect the brightness intensity of the rotational speed light and convert it into a vertical rotational speed signal. The vertical rotational speed module 113 includes a phototransistor Q3. The vertical adjustable module 111 is used to receive the vertical rotational speed signal and output a vertical reference signal. The vertical adjustable module 111 is used to adjust the magnitude of the vertical reference signal. The vertical adjustable module 111 includes a variable resistor RP1. The vertical fixed module 112 is used to compare with the vertical adjustable module 111. The vertical fixed module 112 includes a resistor R1 and a resistor R2.
[0046] The vertical comparison device 12 includes a comparator N1. The comparator N1 can use a comparator chip with the model number TLV1701AIDCKR.
[0047] The horizontal vibration detection device 20 includes a chip U2 and a resistor R6. In this embodiment, the chip U2 uses a broadband acceleration sensor with the model number EAG01-100.
[0048] The horizontal reference device 21 includes a horizontal adjustable module 211, a horizontal fixed module 212, and a horizontal rotational speed module 213. The horizontal rotational speed module 213 is used to detect the brightness intensity of the rotational speed light and convert it into a horizontal rotational speed signal. The horizontal rotational speed module 213 includes a phototransistor Q4. The horizontal adjustable module 211 is used to receive the horizontal rotational speed signal and output a horizontal reference signal. The horizontal adjustable module 211 is used to adjust the magnitude of the horizontal reference signal. The horizontal adjustable module 211 includes a variable resistor RP2. The horizontal fixed module 212 is used to compare with the horizontal adjustable module 211. The horizontal fixed module 212 includes a resistor R4 and a resistor R5.
[0049] The horizontal comparison device 22 includes a comparator N2. The comparator N2 can use a comparator chip with the model number TLV1701AIDCKR.
[0050] The vibration logic device 23 includes a chip U4, and the chip U4 uses an OR gate integrated circuit chip. The state logic device 30 includes a chip U3, and the chip U3 uses an AND gate integrated circuit chip.
[0051] The input terminal of the chip U1 is connected to the power supply VCC. The output terminal of the chip U1 is connected to the positive input terminal of the comparator N1, then connected to one end of the resistor R3, and then connected to one input terminal of the chip U3. The other end of the resistor R3 is connected to the ground GND. The collector of the photosensitive triode Q3 is connected to the power supply VCC. The emitter of the photosensitive triode Q3 is connected to one end of the adjustable resistor RP1. The other end of the adjustable resistor RP1 is connected to one end of the resistor R1 and then connected to one end of the resistor R2. The other end of the resistor R1 is connected to the ground GND. The other end of the resistor R2 is connected to the negative input terminal of the comparator N1.
[0052] The input terminal of the chip U2 is connected to the power supply VCC. The output terminal of the chip U2 is connected to the positive input terminal of the comparator N2, then connected to one end of the resistor R6, and then connected to the other input terminal of the chip U3. The other end of the resistor R6 is connected to the ground GND. The collector of the photosensitive triode Q4 is connected to the power supply VCC. The emitter of the photosensitive triode Q4 is connected to one end of the adjustable resistor RP2. The other end of the adjustable resistor RP2 is connected to one end of the resistor R4 and then connected to one end of the resistor R5. The other end of the resistor R4 is connected to the ground GND. The other end of the resistor R5 is connected to the negative input terminal of the comparator N1.
[0053] The warning control device 13 includes a triode Q2, and the triode Q2 uses an NPN type triode. The state control device 31 includes a triode Q3, and the triode Q3 uses an NPN type triode.
[0054] The vibration warning device 14 includes a light-emitting diode LED2. The state display device 32 includes a light-emitting diode LED1. The diode LED2 and the diode LED1 can use lights of different colors to show the difference.
[0055] The output terminal of the chip U3 is connected to the base of the triode Q1. The emitter of the triode Q1 is connected to the ground GND. The collector of the triode Q1 is connected to the cathode of the light-emitting diode LED1. The anode of the light-emitting diode LED1 is connected to the power supply VCC. The output terminal of the comparator N1 is connected to one input terminal of the chip U4. The output terminal of the comparator N2 is connected to the other input terminal of the chip U4. The output terminal of the chip U4 is connected to the base of the triode Q2. The emitter of the triode Q2 is connected to the ground GND. The collector of the triode Q2 is connected to the cathode of the light-emitting diode LED2. The anode of the light-emitting diode LED2 is connected to the power supply VCC.
[0056] The rotational speed detection device 15 includes a chip U5. The chip U5 can use a rotational speed sensor with the model number IME08-04NNSZW2S. The rotation state device 16 includes a light-emitting diode LED3, and an integrated optocoupler chip integrating the light-emitting diode LED3, a photosensitive triode Q3, and a photosensitive triode Q4 can be used. The protection device 17 includes a resistor R1.
[0057] One end of the resistor R1 is connected to the power supply VCC, the other end of the resistor R1 is connected to the input end of the chip U5, the output end of the chip U5 is connected to the anode of the light-emitting diode LED3, and the cathode of the light-emitting diode LED3 is connected to the ground GND.
[0058] The implementation principle of the collector for 5G intelligent transmission in the embodiment of the present invention is as follows: The vertical vibration detection device 10 and the horizontal vibration detection device 20 are used to detect the vibration condition of the induced draft fan, and the state display device 32 is used to display the working states of the vertical vibration detection device 10 and the horizontal vibration detection device 20. The vibration warning device 14 warns of excessive vibration. At the same time, the rotational speed detection device 15 detects the rotational speed of the fan blades of the induced draft fan, so as to dynamically adjust the vibration amplitude that the vibration warning device 14 needs to issue a warning according to the rotational speed, thereby improving the convenience of using the collector.
[0059] The above are only the preferred embodiments of the present invention. The protection scope of the present invention is not limited to the above embodiments. Any technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as the protection scope of the present invention.
Claims
1. A 5G intelligent transmission collector, characterized by: The invention comprises a vertical vibration detection device (10), a vertical reference device (11), a vertical comparison device (12), a warning control device (13) and a vibration warning device (14), wherein the vertical vibration detection device (10) is used to detect a vibration physical quantity in a vertical direction and convert it into a vertical vibration signal, the vertical reference device (11) is used to provide a vertical reference signal, the vertical comparison device (12) is connected to the vertical vibration detection device (10) and the vertical reference device (11) to receive the vertical vibration signal and the vertical reference signal and output a vertical comparison signal, the warning control device (13) is connected to the vertical comparison device (12) to receive the vertical comparison signal and output a warning control signal, and the vibration warning device (14) is connected to the warning control device (13) to receive the warning control signal and control the on and off of the warning light in response to the warning control signal; When the vertical vibration signal is greater than the vertical reference signal, the vertical comparison device (12) outputs a high-level vertical comparison signal, the warning control device (13) receives the high-level vertical comparison signal and outputs a high-level warning control signal, and the vibration warning device (14) receives the high-level warning control signal and controls the warning light to start; when the vertical vibration signal is not greater than the vertical reference signal, the vertical comparison device (12) outputs a low-level vertical comparison signal, the warning control device (13) receives the low-level vertical comparison signal and outputs a low-level warning control signal, and the vibration warning device (14) receives the low-level warning control signal and controls the warning light to turn off.
2. A 5G intelligent transmission collector according to claim 1, characterized in that: It also includes a rotation speed detection device (15) and a rotation state device (16), wherein the rotation speed detection device (15) is used to detect the physical quantity of the rotation speed of the fan blade and convert it into a rotation speed detection signal, and the rotation state device (16) is connected to the rotation speed detection device (15) to receive the rotation speed detection signal and respond to the rotation speed detection signal to control the brightness of the rotation speed light; When the rotation speed of the fan blade is fast, the rotation speed detection device (15) outputs a high-level rotation speed detection signal, and the rotation state device (16) receives the high-level rotation speed detection signal and emits a brighter rotation speed light; when the rotation speed of the fan blade is slow, the rotation speed detection device (15) outputs a low-level rotation speed detection signal, and the rotation state device (16) receives the low-level rotation speed detection signal and emits a darker rotation speed light.
3. A 5G intelligent transmission collector according to claim 2, characterized in that: The vertical reference device (11) comprises a vertically adjustable module (111) and a vertically fixed module (112); the vertically adjustable module (111) is used to adjust the size of an output vertical reference signal.
4. A 5G intelligent transmission collector according to claim 3, characterized in that: The vertical reference device (11) further comprises a vertical rotation speed module (113), wherein the vertical rotation speed module (113) is used to detect the brightness intensity of the rotation speed light and output a vertical rotation speed signal to the vertical adjustable module (111); When the speed light is brighter, the vertical speed module (113) outputs a high-level vertical speed signal, and the vertical reference device (11) receives the high-level vertical speed signal and outputs a high-level vertical reference signal; when the speed light is dim, the vertical speed module (113) outputs a low-level vertical speed signal, and the vertical reference device (11) receives the low-level vertical speed signal and outputs a low-level vertical reference signal.
5. A 5G intelligent transmission collector according to claim 2, characterized in that: The device also comprises a horizontal vibration detection device (20), a horizontal reference device (21), a horizontal comparison device (22) and a vibration logic device (23), wherein the horizontal vibration detection device (20) is used to detect a vibration physical quantity in a horizontal direction and convert it into a horizontal vibration signal, the horizontal reference device (21) is used to provide a horizontal reference signal, the horizontal comparison device (22) is connected to the horizontal vibration detection device (20) and the horizontal reference device (21) to receive the horizontal vibration signal and the horizontal reference signal and output a horizontal comparison signal, and the vibration logic device (23) is connected to the vertical comparison device (12) and the horizontal comparison device (22) to receive the vertical comparison signal and the horizontal comparison signal and output a vibration logic signal to the warning control device (13); When the horizontal vibration signal is greater than the horizontal reference signal, the horizontal comparison device (22) outputs a high-level horizontal comparison signal; when the horizontal vibration signal is not greater than the horizontal reference signal, the horizontal comparison device (22) outputs a low-level horizontal comparison signal; When the vertical comparison device (12) outputs a high-level vertical comparison signal or the horizontal comparison device (22) outputs a high-level horizontal comparison signal, the vibration logic device (23) receives the high-level vertical comparison signal or the high-level horizontal comparison signal and outputs a high-level vibration logic signal to the warning control device (13).
6. A 5G intelligent transmission collector according to claim 5, characterized in that: The horizontal reference device (21) comprises a horizontal adjustable module (211) and a horizontal fixed module (212), wherein the horizontal adjustable module (211) is used to adjust the size of the output horizontal reference signal.
7. A 5G intelligent transmission collector according to claim 6, characterized in that: The horizontal reference device (21) further comprises a horizontal rotation speed module (213), wherein the horizontal rotation speed module (213) is used to detect the brightness intensity of the rotation speed light and output a horizontal rotation speed signal to the horizontal adjustable module (211); When the speed light is brighter, the horizontal speed module (213) outputs a high-level horizontal speed signal, and the horizontal reference device (21) receives the high-level horizontal speed signal and outputs a high-level horizontal reference signal; when the speed light is dim, the horizontal speed module (213) outputs a low-level horizontal speed signal, and the horizontal reference device (21) receives the low-level horizontal speed signal and outputs a low-level horizontal reference signal.
8. A 5G intelligent transmission collector according to claim 5, characterized in that: The device also includes a state logic device (30), a state control device (31) and a state display device (32), wherein the state logic device (30) is connected to the vertical vibration detection device (10) and the horizontal vibration detection device (20) to receive a vertical vibration detection signal and a horizontal vibration detection signal and output a state logic signal, the state control device (31) is connected to the state logic device (30) to receive a state logic signal and output a state control signal, and the state display device (32) is connected to the state control device (31) to receive a state control signal and respond to the state control signal to control the on and off of a state light; Only when the vertical vibration detection device (10) outputs a high-level vertical vibration detection signal and the horizontal vibration detection device (20) outputs a high-level horizontal vibration detection signal, the state logic device (30) outputs a high-level state logic signal, the state control device (31) is connected to the state logic device (30) to receive the high-level state logic signal and output a high-level state control signal, and the state display device (32) receives the high-level state control signal and controls the state light to start.
9. A 5G intelligent transmission collector according to claim 2, characterized in that: It also comprises a protection device (17), wherein the protection device (17) is used to protect the rotation speed detection device (15) and the rotation state device (16).
10. The 5G intelligent transmission collector according to claim 1, characterized in that: The vertical vibration detection device (10) comprises an acceleration detection module (101) and a comparison module (102), wherein the acceleration detection module (101) is used to detect an acceleration signal in a vertical direction and convert it into a vertical vibration detection signal, and the comparison module (102) is used to compare with the acceleration detection module (101) and protect the acceleration detection module (101).