Parts and Methods for the Lifting System under Artificial Intelligence

By using improved connectors between the operating table and the telescopic rod, and optimizing the wireless connection method, problems such as difficulty in rotating and adjusting the operating table and large delay in information transmission are solved, and the effect of flexible rotation, reducing manufacturing costs and improving the correctness of information transmission is achieved.

CN109623747BActive Publication Date: 2025-05-30XIAN YUBIN INFORMATION TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN201811544461.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2018-12-17
Publication Date
2025-05-30
Estimated Expiration
2038-12-17

AI Technical Summary

Technical Problem

In the prior art, the operating table cannot be rotated after being connected to the telescopic rod, and it is not easy to decompose, the information transmission delay is large, the information collision probability is high, and the accuracy is not high.

Method used

Improved connectors, including a polypropylene material coupling strip, a fastener tab and a stainless steel material fastener, are adopted to realize flexible rotation and adjustment of the operator table and the telescopic rod through these components, and a wireless connection with the wireless router through the WIFI module is constructed to synchronize the transmission of height packet information to reduce delays and information collisions.

Benefits of technology

The improved connector allows the operating table to rotate and adjust flexibly, reducing manufacturing costs and complexity. At the same time, by optimizing wireless connection methods, the delay in information transmission and the probability of information collision are reduced, and the accuracy of transmission is improved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN109623747B_ABST
    Figure CN109623747B_ABST
Patent Text Reader

Abstract

An accessory and method for a lifting system under artificial intelligence. On the protruding piece for fastening made of polypropylene material, an extrusion port and a pressure-bearing port are sequentially arranged from the inside to the outside. A moving piece is arranged in the extrusion port, and a plate body made of stainless steel material with a threaded groove hole is arranged in the pressure-bearing port. A fastening screw made of stainless steel material is threaded on the plate body made of stainless steel material with a threaded groove hole. The WIFI module 1 can establish a wireless connection in the removal configuration mode with one or more wireless routers in the WLAN network among several wireless routers in the WLAN network. It effectively avoids the defects in the prior art that the operating table cannot be rotated after being connected to the telescopic rod, and it is not easy to disassemble, the information transmission delay is not small, the probability of information collision increases greatly due to several controllers using the same information link, and the accuracy is not high.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of artificial intelligence technology, and in particular to an accessory for an artificial intelligence lowering and lowering system and a method thereof. Background Art

[0002] Lifting device is a commonly used tool. Traditional lifting device cannot achieve intelligent lifting, which reduces the efficiency of production. It is complicated to operate and not easy to control intelligently. Therefore, we have made improvements and proposed a lifting device based on artificial intelligence. It is the lifting device based on artificial intelligence as described in the application number "201820011717.X", the application date "2018.01.04" and the patent name "A lifting device based on artificial intelligence";

[0003] The artificial intelligence-based lifting device includes a base, a control panel is installed in the middle of the side of the base, a controller fixedly connected to the base is arranged on one side of the control panel, universal wheels are installed at the four corners of the bottom end of the base, a drawer is arranged on one side of the base, slide bars are fixedly connected to the two sides of the drawer, the slide bars are slidably connected to the inside of one side of the base with matching slide grooves, a first hydraulic cylinder is fixedly connected to the middle of the top of the base, the hydraulic cylinder of the first hydraulic cylinder is transmission-connected to an operating table, two telescopic rods are fixedly connected between the operating table and the base, a height sensor is fixedly connected to the side of the operating table, and the operating table is fixedly connected to the side of the operating table. Slide grooves are provided on both sides of the top of the operating table, and top plates are fixedly connected on both sides of the top of the operating table. A second hydraulic cylinder is fixedly connected to one side of the top plate, and a clamp is transmission-connected to the hydraulic rod of the second hydraulic cylinder. Both sides of the bottom end of the clamp are slidably connected to the slide grooves through fixedly connected sliders. The height sensor is electrically connected to the controller, and the controller is electrically connected to the first hydraulic cylinder. A first hydraulic cylinder switch, a second hydraulic cylinder switch and a controller switch are installed on the surface of the control panel, and the first hydraulic cylinder, the second hydraulic cylinder and the controller are electrically connected to an external power supply through the first hydraulic cylinder switch, the second hydraulic cylinder switch and the controller switch, respectively.

[0004] A wheel brake is installed on the universal wheel.

[0005] A fastening bolt is installed on one side of the telescopic rod.

[0006] Lighting lamps are installed at the four corners of the top of the base, and a lighting lamp switch is installed on the surface of the control panel. The lighting lamp is electrically connected to an external power supply through the lighting lamp switch.

[0007] The top of the base and the corners of the bottom of the operating table are fixedly connected with rubber pads at positions corresponding to each other.

[0008] A rubber pad is adhered to one side of the card board.

[0009] This lifting device based on artificial intelligence is equipped with universal wheels for easy movement. At the same time, the device is equipped with a height sensor, which is connected to the controller. The height sensor transmits height information to the controller, and the controller can control the first hydraulic cylinder to lift, thereby controlling the lifting of the operating platform. This facilitates the accurate lifting of the operating platform and enables intelligent control of the lifting of the operating platform, improving work efficiency. A clamping plate is provided at the top of the operating platform of the device, which can clamp the product to be lifted, avoiding the dropping of the lifted product during the lifting process and better ensuring production efficiency.

[0010] Between the operating platform and the base, two telescopic rods are fixedly connected. The bottom end of each telescopic rod is fixedly connected to the base, and the top end of each telescopic rod is connected to the bottom of the operating platform via a joint. The operating platform is connected to the telescopic rod via a joint. However, the current joint can only achieve the connection performance. After connecting the operating platform and the telescopic rod, the operating platform cannot be rotated, and it is not easy to disassemble either.

[0011] To monitor the height information, the height sensor is connected to the controller, and the controller is also connected to a WIFI module 1. There is a monitoring platform set up at a distance, which can be a computer, and the monitoring platform is connected to a WIFI module 2; the WIFI module 1 is wirelessly connected to the WIFI module 2 through a WLAN network. In this way, after the height sensor collects the height information, it is transmitted to the controller, and then the height information is transmitted to the WIFI module 2 via the WIFI module 1, and then the height information is transmitted to the monitoring platform for display or storage.

[0012] In practical applications, there is more than one lifting device for artificial intelligence, and thus there is more than one height sensor. The height sensors and the controllers are in one-to-one correspondence. To save the resources of the WIFI module, all the controllers are only connected to one WIFI module 1, such that the numbers of the height sensors and the controllers are also several, while there is only one WIFI module 1. In addition, there is only one monitoring platform, which is connected to one WIFI module 2. The WIFI module 1 is wirelessly connected to the WIFI module 2 via the WLAN network. Thus, for a system composed of several controllers via the WLAN network, it is necessary to overcome the information transfer requirements that may simultaneously occur among the several controllers at any moment, so as to cause information collisions in the information link between the WIFI module 1 and the WIFI module 2 via the WLAN network. To overcome such information collisions, currently, it is through the configuration method of the wireless router, that is, each controller sends a configuration request to the wireless router before the height information. The wireless router configures the information link for the controller according to the usage or idle status of the information link between the WIFI module 1 and the WIFI module 2 via the WLAN network. Thus, such a method will result in several rounds of information transfer during the information transfer between the wireless router and the processed information, so such a method will cause a significant delay in information transfer. To reduce the delay of information transfer, there is also a removal configuration method, that is, as long as a controller has a height information transfer requirement, it directly performs the transfer of height information on the information link between the WIFI module 1 and the WIFI module 2 via the WLAN network. However, such a method will greatly increase the probability of information collisions due to several controllers using the same information link, so the correctness is not high. Summary of the Invention

[0013] To solve the above problems, the present invention provides a fitting and method for a lifting system under artificial intelligence, effectively avoiding the defects in the prior art that the operating table cannot be rotated after being connected to the telescopic rod, and it is not easy to disassemble, the delay of information transfer is significant, the probability of information collisions is greatly increased due to several controllers using the same information link, and the correctness is not high.

[0014] To overcome the deficiencies in the prior art, the present invention provides a solution for a fitting and method for a lifting system under artificial intelligence, specifically as follows:

[0015] A fitting for a lifting system under artificial intelligence, including a lifting device based on artificial intelligence;

[0016] The lifting device based on artificial intelligence includes a base, a first hydraulic cylinder is fixedly connected to the middle of the top end of the base, a hydraulic cylinder of the first hydraulic cylinder is drivingly connected to an operating table, and two telescopic rods are fixedly connected between the operating table and the base;

[0017] Between the operating table and the base, there are two telescopic rods fixedly connected. The bottom end of each telescopic rod is fixedly connected to the base, and the top end of each telescopic rod is connected to the bottom of the operating table via an improved joint. The improved joint includes a connecting strip C1 made of polypropylene, a fastening protruding piece C5 made of polypropylene, and a fastening screw D5 made of stainless steel;

[0018] The connecting strip C1 made of polypropylene is located at the middle position of the improved joint. An interface C2 and a deformation opening C3 are provided at the lower end of the connecting strip C1 made of polypropylene. The interface C2 is a stepped opening, and the deformation opening C3 communicates with the interface C2; A fastening protruding piece C5 made of polypropylene is provided on the outer surface of the connecting strip C1 made of polypropylene. An extrusion opening C6 and a pressure-bearing opening C7 are sequentially arranged on the fastening protruding piece C5 made of polypropylene from the inside out. A moving piece D1 is arranged in the extrusion opening C6, and a plate-shaped body C8 with a threaded groove hole made of stainless steel is arranged in the pressure-bearing opening C7; The plate-shaped body C8 with a threaded groove hole made of stainless steel is threaded with a fastening screw D5 made of stainless steel. One end of the fastening screw D5 made of stainless steel is provided with a fastening handle D8 made of polypropylene, and the other end is connected to the moving piece D1; The deformation opening C3 is located on both sides of the fastening protruding piece C5 made of polypropylene. The deformation opening C3 and the extrusion opening C6 divide the connecting strip C1 made of polypropylene into a fastening block C4.

[0019] One side of the moving piece D1 is provided with an arched fastening wall surface D2, and the other side is provided with a pressure-bearing opening C7; One end of the fastening screw D5 made of stainless steel is provided with a circular embedded interface D6, and the circular embedded interface D6 is movably embedded in the moving piece opening D3.

[0020] A limiting block D4 is arranged in the pressure-bearing opening C7.

[0021] The other end of the fastening screw D5 made of stainless steel is provided with a limiting piece D7, and the limiting piece D7 is fixedly connected to the fastening handle D8 made of polypropylene.

[0022] A quick-threaded screw C9 is arranged on the fastening protruding piece C5 made of polypropylene, and the quick-threaded screw C9 is located above the fastening handle D8 made of polypropylene.

[0023] To monitor height information, the height sensor is connected to the controller, which is also connected to WIFI Module 1. A monitoring platform is set up at a distance, which can be a computer and is connected to WIFI Module 2. WIFI Module 1 is wirelessly connected to WIFI Module 2 via the WLAN network. In this way, after the height sensor collects height information, it is transmitted to the controller, and then the height information is transmitted to WIFI Module 2 via WIFI Module 1, and then the height information is transmitted to the monitoring platform for display or storage.

[0024] There is more than one lifting device of artificial intelligence, so there is more than one height sensor. The height sensors correspond to the controllers one by one. To save the resources of the WIFI module, all the controllers are only connected to one WIFI Module 1, so that the number of height sensors and controllers is also several, while there is only one WIFI Module 1. In addition, there is only one monitoring platform, which is connected to one WIFI Module 2. WIFI Module 1 is wirelessly connected to WIFI Module 2 via the WLAN network, and an information channel is formed between WIFI Module 1 and WIFI Module 2 via the WLAN network.

[0025] The method for the accessories of the artificial intelligence lifting system includes transmitting the height information to WIFI Module 2 via WIFI Module 1. The specific method for transmitting the height information to WIFI Module 2 via WIFI Module 1 includes the following ways:

[0026] (1) WIFI Module 1 respectively establishes wireless connections with several wireless routers in the WLAN network.

[0027] For the wireless router in the WLAN network with the information link between WIFI Module 1 and WIFI Module 2 via the WLAN network in the de-configuration mode, WIFI Module 1 can establish a de-configuration mode wireless connection with it. In practical applications, WIFI Module 1 can establish a de-configuration mode wireless connection with more than one wireless router in the WLAN network among several wireless routers in the WLAN network. When WIFI Module 1 uses the de-configuration mode wireless connection to transmit height message information, as long as there is a transmission requirement for height message information, it can directly use the information link between WIFI Module 1 and WIFI Module 2 via the WLAN network in the de-configuration mode to transmit height message information.

[0028] (2) At least one wireless router in the WLAN of the wireless routers in the several WLANs transmits altitude message information via the removal configuration method. Additionally, the network layer synchronizes redundant altitude message information to the network layer of the wireless routers in the WLAN via several wireless connections respectively established with the several wireless routers in the WLAN.

[0029] WIFI module one can transmit altitude message information via the removal configuration method with at least one wireless router in the WLAN of the wireless routers in the several WLANs. Moreover, the network layer of WIFI module one can synchronize redundant and identical altitude message information to the network layer of the wireless routers in the WLAN via several wireless connections respectively established with the several wireless routers in the WLAN. That is to say, the altitude message information transmitted by WIFI module one on each of the several wireless connections is the same altitude message information, which is the altitude message information to be transmitted.

[0030] It is possible to process and transmit altitude message information using the compression algorithm method on more than one wireless connection with the removal configuration method.

[0031] It is possible to transmit the altitude message information using the HARQ type I method on at least one of the several wireless connections.

[0032] In actual application, when it is determined that the altitude message information on any one of the several wireless connections is successfully transmitted, it is possible to terminate the transmission of altitude message information on other wireless connections. That is to say, after one of the several wireless connections achieves successful transmission, the network layer can control the abandonment of the transmission of altitude message information on other wireless connections.

[0033] When the network layer of the wireless routers in the WLAN receives several altitude message information via the several wireless connections, it abandons redundant altitude message information by detecting the sequence numbers of the altitude message information.

[0034] The beneficial effects of the present invention are:

[0035] The improved connector can rotate flexibly, is convenient to adjust, has a simple structure, and a low manufacturing cost.

[0036] Wireless connections are respectively established via several wireless routers in the same WLAN network. Additionally, a wireless connection without a configuration method is established with at least one wireless router in the WLAN network among the several WLAN network wireless routers, so as to transmit altitude message information to at least one wireless router in the WLAN network among the several WLAN network wireless routers in the WLAN network via the configuration-free method. Additionally, the network layer of WIFI module 1 synchronizes the redundant transmitted altitude message information to the network layer of the wireless router in the WLAN network on the several wireless connections. Since the altitude message information transmitted on all the wireless connections is the same altitude message information, the correctness of the altitude message information transmission can be ensured. Additionally, there is more than one wireless connection established with the several wireless routers in the WLAN network that is without a configuration method, which can prevent the delay of information transmission caused by the consumption of configuration reciprocating information exchange. Therefore, it can also ensure a state where the delay of information transmission of the altitude message information is very small. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 is a structural diagram of an improved joint of the present invention;

[0038] Figure 2 is Figure 1 a sectional view taken along the line X-X;

[0039] Figure 3 is a structural diagram of a moving piece of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0040] The present invention will be further described below in conjunction with the drawings and embodiments.

[0041] As Figures 1 - 3 shown, the accessories for the artificial intelligence lifting system include the artificial intelligence-based lifting device as described in the patent application No. "201820011717.X", the application date of "January 4, 2018", and the patent title of "A Lifting Device Based on Artificial Intelligence";

[0042] The AI-based lifting device includes a base. In the middle of the side of the base, a control panel is installed. On one side of the control panel, a controller fixedly connected to the base is provided. At the four corners of the bottom end of the base, universal wheels are installed. On one side of the base, a drawer is provided. On both sides of the drawer, slide bars are fixedly connected. The slide bars are slidably connected to sliding grooves provided inside one side of the base in a matching manner. In the middle of the top end of the base, a first hydraulic cylinder is fixedly connected. The hydraulic cylinder of the first hydraulic cylinder is drivingly connected to an operating platform. Between the operating platform and the base, two telescopic rods are fixedly connected. On the side of the operating platform, a height sensor is fixedly connected. On both sides of the top end of the operating platform, sliding grooves are provided. On both sides of the top end of the operating platform, top plates are fixedly connected. On one side of the top plate, a second hydraulic cylinder is fixedly connected. The hydraulic rod of the second hydraulic cylinder is drivingly connected to a clamping plate. At both sides of the bottom end of the clamping plate, through fixedly connected sliders, it is slidably connected to the sliding groove. The height sensor is electrically connected to the controller. The controller is electrically connected to the first hydraulic cylinder. On the surface of the control panel, a first hydraulic cylinder switch, a second hydraulic cylinder switch, and a controller switch are installed. The first hydraulic cylinder, the second hydraulic cylinder, and the controller are respectively electrically connected to an external power supply through the first hydraulic cylinder switch, the second hydraulic cylinder switch, and the controller switch;

[0043] Wheel brakes are installed on the universal wheels.

[0044] On one side of the telescopic rod, a fastening bolt is installed.

[0045] At the four corners of the top end of the base, lighting lamps are installed. On the surface of the control panel, a lighting lamp switch is installed. The lighting lamp is electrically connected to an external power supply through the lighting lamp switch.

[0046] At the corresponding positions of the top end of the base and the bottom corners of the operating platform, rubber cushion blocks are fixedly connected.

[0047] On one side of the clamping plate, a rubber pad is adhered.

[0048] Between the operating platform and the base, two telescopic rods are fixedly connected. At the bottom end of each telescopic rod, it is fixedly connected to the base. At the top end of each telescopic rod, it is connected to the bottom of the operating platform through an improved joint. The improved joint includes a columnar connecting strip C1 made of polypropylene material, a clamping sheet-like protruding piece C5 made of polypropylene material, and a clamping lead screw D5 made of stainless steel material;

[0049] The connecting strip C1 of the polypropylene material is located at the middle position of the improved joint. An interface C2 and a deformation opening C3 are provided at the lower end of the connecting strip C1 of the polypropylene material. The interface C2 is a stepped opening, and the deformation opening C3 communicates with the interface C2. In addition, the number of the deformation openings C3 is a pair and they are mirror-distributed; a fastening protrusion C5 of polypropylene material is provided on the outer surface of the connecting strip C1 of the polypropylene material. An extrusion opening C6 and a pressure-bearing opening C7 are sequentially arranged on the fastening protrusion C5 of polypropylene material from the inside to the outside, that is, the extrusion opening C6 is located between the connecting strip C1 of the polypropylene material and the fastening protrusion C5 of polypropylene material. A sheet-shaped moving piece D1 is arranged in the extrusion opening C6, and a plate-shaped body C8 made of stainless steel with a threaded groove hole is arranged in the pressure-bearing opening C7; a fastening screw D5 made of stainless steel is threaded on the plate-shaped body C8 made of stainless steel with a threaded groove hole. One end of the fastening screw D5 made of stainless steel is provided with a fastening handle D8 made of polypropylene material, and the other end is connected to the moving piece D1; the deformation openings C3 are located on both sides of the fastening protrusion C5 of polypropylene material. The deformation openings C3 and the extrusion opening C6 divide the connecting strip C1 of the polypropylene material into a block-shaped fastening block C4.

[0050] One side of the moving piece D1 is provided with an arched fastening wall surface D2, and the other side is provided with a pressure-bearing opening C7; one end of the fastening screw D5 made of stainless steel is provided with a circular embedded interface D6, and the circular embedded interface D6 is movably embedded in the opening D3 for the moving piece.

[0051] A block-shaped limiting block D4 is arranged in the pressure-bearing opening C7. The limiting block D4 prevents the moving piece D1 from sliding off through the circular embedded interface D6.

[0052] The other end of the fastening screw D5 made of stainless steel is provided with a sheet-shaped limiting piece D7, and the limiting piece D7 is fixedly connected to the fastening handle D8 made of polypropylene material. The limiting piece D7 prevents the fastening screw D5 made of stainless steel from rotating relative to the fastening handle D8 made of polypropylene material.

[0053] The polypropylene material is used in the improved joint, reducing the manufacturing cost.

[0054] A quick screw C9 is arranged on the fastening protrusion C5 of the polypropylene material, and the quick screw C9 is above the fastening handle D8 made of polypropylene material. The quick screw C9 enhances the anti-damage performance of the locking boss 35 to prevent the plate-shaped body C8 made of stainless steel with a threaded groove hole from deforming the fastening protrusion C5 of the polypropylene material under pressure.

[0055] The arched clamping wall surface D2 of the moving piece D1 is firmly connected to the clamping block C4, reducing the damage of the moving piece D1 to the clamping block C4 and increasing the working cycle of the clamping block C4. The moving piece D1 is located between the clamping block C4 and the fastening screw D5 for stainless steel material, reducing the damage of the fastening screw D5 for stainless steel material to the clamping block C4 and improving the working cycle of the improved joint.

[0056] Turn the fastening handle D8 for polypropylene material, and the fastening screw D5 for stainless steel material rotates under the traction of the fastening handle D8 for polypropylene material. The fastening screw D5 for stainless steel material drives the moving piece D1 towards the clamping block C4 under the drive of the plate-shaped body C8 with a threaded groove hole for stainless steel material. The clamping block C4 is clamped on the telescopic rod, preventing the improved joint from rotating relative to the telescopic rod. Rotate the fastening handle D8 for polypropylene material in the reverse direction, and the fastening handle D8 for polypropylene material releases the moving piece D1, enabling the improved joint to rotate flexibly.

[0057] If it is necessary to monitor the height information, the height sensor is connected to the controller, and the controller is also connected to a WIFI module I. A monitoring platform is set up at a distance, and the monitoring platform can be a computer. The monitoring platform is connected to a WIFI module II. The WIFI module I is wirelessly connected to the WIFI module II through a WLAN network. In this way, after the height sensor collects the height information, it is transmitted to the controller, and then the height information is transmitted to the WIFI module II through the WIFI module I, and then the height information is transmitted to the monitoring platform for display or storage.

[0058] In actual application, there is more than one lifting device of artificial intelligence, and there is more than one height sensor. The height sensors correspond to the controllers one by one. In order to save the resources of the WIFI module, all the controllers are only connected to one WIFI module I, so that the number of height sensors and controllers is also several, while there is only one WIFI module I, and there is also only one monitoring platform. The monitoring platform is connected to a WIFI module II, and the WIFI module I is wirelessly connected to the WIFI module II through a WLAN network. An information channel is formed between the WIFI module I and the WIFI module II through the WLAN network.

[0059] The method for the accessories of the artificial intelligence lifting system, the method includes that the height information is transmitted to WIFI module two through WIFI module one. The method that the height information is transmitted to WIFI module two through WIFI module one includes: WIFI module one respectively establishes wireless connections with several wireless routers in the WLAN network, and establishes wireless connections with more than one wireless router in the WLAN network among the several wireless routers in the WLAN network in a de - configuration mode, and then transmits height message information to more than one wireless router in the WLAN network among the several wireless routers in the WLAN network through the de - configuration mode. Moreover, the network layer of WIFI module one synchronously transmits redundant height message information to the network layer of the wireless routers in the WLAN network on the several wireless connections, which can ensure the correctness of the transmission of height message information. In addition, it can also take into account the very small information transmission delay performance of the transmission of height message information. All the wireless routers in the present invention include a housing and a wireless transceiver antenna connected to each other. A control circuit board is arranged in the housing, and a main controller chip, a wireless transceiver chip, a Flash memory, a memory module and a power module are integrated on the control circuit board. The wireless router configuration mode is that a controller transmits a configuration request to the wireless router that has established a wireless router configuration mode with WIFI module one before the height information through WIFI module one, and the wireless router configures the information link for WIFI module one according to the usage or vacancy status of the information link between WIFI module one and WIFI module two through the WLAN network. The de - configuration mode is that as long as the controller has a requirement for transmitting height information, it directly executes the transmission of height information on the information link between WIFI module one and WIFI module two through the WLAN network.

[0060] The method for transmitting the height information from WIFI module one to WIFI module two specifically includes the following methods:

[0061] (1) WIFI module one respectively establishes wireless connections with several wireless routers in the WLAN network;

[0062] Therefore, it can achieve that WIFI module one synchronously establishes wireless connections or forms information channels with several wireless routers, so as to achieve a relatively large bandwidth. In practical applications, when WIFI module one has a requirement for transmitting height message information, it can respectively establish wireless connections with several wireless routers in the WLAN network at the communication level;

[0063] For example, when WIFI module one has a requirement to transmit altitude message information to WIFI module two, it can establish a wireless connection with a wireless router in the WLAN network, and can also establish a wireless connection with another wireless router in the WLAN network, and can also simultaneously establish a wireless connection with another wireless router in the WLAN network.

[0064] To reduce the latency of information transmission during transmission, for a wireless router in the WLAN network equipped with an information link between WIFI module one and WIFI module two via the WLAN network in the de-configuration mode, WIFI module one can establish a wireless connection in the de-configuration mode with it; in practical applications, WIFI module one can establish a wireless connection in the de-configuration mode with more than one wireless router in the WLAN network among several wireless routers in the WLAN network. That is to say, when WIFI module one uses the wireless connection in the de-configuration mode to perform altitude message information transmission, as long as there is a transmission requirement for altitude message information, it can directly use the information link between WIFI module one and WIFI module two via the WLAN network in the de-configuration mode to perform altitude message information transmission;

[0065] (2) Transmit altitude message information to at least one wireless router in the WLAN network among the several wireless routers in the WLAN network via the de-configuration mode, and the network layer can simultaneously transmit redundant altitude message information to the network layer of the wireless router in the WLAN network via several wireless connections respectively established with the several wireless routers in the WLAN network;

[0066] The altitude information is transmitted in the form of altitude message information.

[0067] In practical applications, WIFI module one can transmit altitude message information to at least one wireless router in the WLAN network among the several wireless routers in the WLAN network via the de-configuration mode. Moreover, the network layer of WIFI module one can simultaneously transmit redundant and the same altitude message information to the network layer of the wireless router in the WLAN network via several wireless connections respectively established with the several wireless routers in the WLAN network. That is to say, the altitude message information transmitted by WIFI module one on each of the several wireless connections is the same altitude message information, that is, the altitude message information to be transmitted;

[0068] For example, WIFI module one transmits altitude message information on one wireless connection, and simultaneously transmits message information on another wireless connection, and still transmits altitude message information on this wireless connection; therefore, the accuracy of altitude message information transmission can be improved.

[0069] Previously, during the transmission of altitude message information, there were significant deficiencies in the wireless router configuration method accompanied by delays in information transmission. Additionally, when the WIFI module actively used the connection method of removing configuration, there were deficiencies in low accuracy.

[0070] By separately establishing wireless connections with several wireless routers in the same WLAN network, and additionally establishing a wireless connection with at least one wireless router in the WLAN network among the several wireless routers in the WLAN network in the removal configuration method, so as to transmit altitude message information with at least one wireless router in the WLAN network among the several wireless routers in the WLAN network via the removal configuration method. Additionally, the network layer of the WIFI module synchronizes the redundant transmission of altitude message information on the several wireless connections to the network layer of the wireless router in the WLAN network. Since the altitude message information transmitted on all the wireless connections is the same altitude message information, it can ensure the correctness of altitude message information transmission. Additionally, there is more than one wireless connection established with the several wireless routers in the WLAN network in the removal configuration method, which can prevent the delay of information transmission caused by the consumption of configuration reciprocating information exchange. Therefore, it can also maintain a state where the delay of altitude message information transmission is very small.

[0071] To improve the utilization efficiency of the bandwidth, in actual applications, altitude message information can be transmitted on more than one wireless connection in the removal configuration method by using the altitude message information processed by the compression algorithm method;

[0072] In actual applications, on at least one of the several wireless connections, the altitude message information can be transmitted using the HARQ type I method; so only the altitude message information that the wireless router in the WLAN network cannot correct needs to be transmitted, and it is not necessary to transmit all the altitude message information multiple times. Therefore, the consumption of the frequency band can be reduced, and the transmission speed of altitude message information can be improved.

[0073] In actual applications, when it is determined that the altitude message information on any one of the several wireless connections is successfully transmitted, the transmission of altitude message information on other wireless connections can be terminated. That is to say, after one of the several wireless connections reaches successful transmission, the network layer can control the abandonment of the transmission of altitude message information on other wireless connections. Therefore, it is not necessary for all the wireless connections of the base station to continuously execute the transmission of altitude message information without value. Therefore, the consumption of the frequency band can be reduced, and the utilization efficiency of the bandwidth can be improved;

[0074] In practical applications, when the network layer of the wireless router in the WLAN network receives the several height message information through the several wireless connections, the redundant height message information is discarded by detecting the sequence numbers of the height message information. That is to say, if the number of wireless connections through which the network layer of WIFI module 1 successfully transmits the height message information is more than one wireless connection, the wireless router in the WLAN network can discard the redundant height message information through the redundant determination rule at the network layer, preventing the processing of several identical height message information. Therefore, the performance of the height message information processing can be improved;

[0075] In practical applications, there can be several methods for the operation of the wireless router in the WLAN network to discard the redundant height message information through the redundant determination rule at the network layer. For example, after all the height message information is successfully transmitted from the user equipment of WIFI module 1 to all the wireless routers in the WLAN network, it can be accumulated to a preset wireless router in the WLAN network, and then the redundant height message information can be discarded through this wireless router by virtue of the redundant determination rule; or, for example, the height message information can be accumulated to the wireless router in a subnet of the WLAN network, and then the redundant height message information can be discarded through this wireless router by virtue of the redundant determination rule.

[0076] The WIFI module 1 includes an information transfer and processing module. The information transfer and processing module is used to respectively establish wireless connections with several wireless routers in the WLAN network; for a wireless router in the WLAN network that is equipped with an information link via the WLAN network between the WIFI module 1 and the WIFI module 2 in the removal configuration mode, the WIFI module 1 can establish a wireless connection in the removal configuration mode with it; in practical applications, the WIFI module 1 can establish a wireless connection in the removal configuration mode with more than one wireless router in the WLAN network among the several wireless routers in the WLAN network. When the WIFI module 1 uses the wireless connection in the removal configuration mode to perform altitude message information transfer, as long as there is a transfer requirement for altitude message information, it can directly use the information link via the WLAN network between the WIFI module 1 and the WIFI module 2 in the removal configuration mode to perform altitude message information transfer; it is used to transfer altitude message information to at least one wireless router in the WLAN network among the several wireless routers in the WLAN network via the removal configuration mode. In addition, the network layer synchronizes redundant altitude message information to the network layer of the wireless router in the WLAN network via several wireless connections respectively established with the several wireless routers in the WLAN network; it can transfer altitude message information to at least one wireless router in the WLAN network among the several wireless routers in the WLAN network via the removal configuration mode. Moreover, the network layer of the WIFI module 1 can synchronize redundant and the same altitude message information to the network layer of the wireless router in the WLAN network via several wireless connections respectively established with the several wireless routers in the WLAN network. That is to say, the altitude message information transferred by the WIFI module 1 on each of the several wireless connections is the same altitude message information, that is, the altitude message information to be transferred; it can transfer altitude message information using the altitude message information processed by the compression algorithm method on more than one wireless connection in the removal configuration mode; it can transfer the altitude message information using the HARQ type I method on at least one wireless connection among the several wireless connections; when it is determined that the altitude message information on any one of the several wireless connections is successfully transferred, it can terminate the transfer of altitude message information on other wireless connections. That is to say, after one of the several wireless connections reaches successful transfer, the network layer can control the abandonment of the transfer of altitude message information on other wireless connections; when the network layer of the wireless router in the WLAN network receives several altitude message information via the several wireless connections, it abandons redundant altitude message information by detecting the sequence numbers of the altitude message information.

[0077] The present invention has been described by way of examples above. Those skilled in the art should understand that the present disclosure is not limited to the above-described embodiments, and various changes, alterations, and substitutions can be made without departing from the scope of the present invention.

Claims

1. An accessory for an artificial intelligence lifting system. It is characterized in that Includes AI-based lifting device; The artificial intelligence-based lifting device comprises a base, a first hydraulic cylinder is fixedly connected to the middle of the top of the base, a hydraulic cylinder of the first hydraulic cylinder is transmission-connected to an operating table, and two telescopic rods are fixedly connected between the operating table and the base; Two telescopic rods are fixedly connected between the operating table and the base, the bottom end of each telescopic rod is fixedly connected to the base, and the top end of each telescopic rod is connected to the bottom of the operating table via an improved joint, and the improved joint includes a connecting strip made of polypropylene material, a protruding piece for fastening made of polypropylene material, and a screw for fastening made of stainless steel material; The connecting strip of the polypropylene material is located in the middle position of the improved joint, and a connecting interface and a deformation port are arranged on the lower end of the connecting strip of the polypropylene material, wherein the connecting interface is a step-shaped port, and the deformation port is connected with the connecting interface; the outer surface of the connecting strip of the polypropylene material is provided with a protruding piece for fastening of the polypropylene material, and an extrusion port and a pressure-bearing port are arranged on the protruding piece for fastening of the polypropylene material in sequence from the inside to the outside, and a moving piece is arranged in the extrusion port, and a plate-like body with a thread groove hole of a stainless steel material is arranged in the pressure-bearing port; the plate-like body with a thread groove hole of the stainless steel material is threadedly connected with a screw for fastening of the stainless steel material, and a screw for fastening of the stainless steel material is arranged at one end of the screw for fastening of the stainless steel material with a handle for fastening of the polypropylene material, and the other end is connected with the moving piece; the deformation port is located on both sides of the protruding piece for fastening of the polypropylene material, and the deformation port and the extrusion port divide the connecting strip of the polypropylene material into a pressing block; If the height of the conveying shaft is to be monitored, a height sensor is arranged on the conveying shaft, the height sensor is connected to a controller, the controller is also connected to WIFI module 1, and a monitoring platform is arranged at a distance, the monitoring platform can be a computer, and the monitoring platform is connected to WIFI module 2; the WIFI module 1 is wirelessly connected to WIFI module 2 through a WLAN network, so that after the height sensor collects the height information, it can be transmitted to the controller, and then the height information is transmitted to WIFI module 2 via WIFI module 1, and then the height information is transmitted to the monitoring platform for display or storage; There is more than one artificial intelligence lifting device, and there is more than one transmission axis. The transmission axis corresponds to the height sensor one by one, and the height sensor corresponds to the controller one by one. In order to save the resources of the WIFI module, all the controllers are only connected to one WIFI module one, so that the number of height sensors and controllers is also several, and there is only one WIFI module one. In addition, there is only one monitoring platform, and the monitoring platform is connected to one WIFI module two. WIFI module one is wirelessly connected to WIFI module two through the WLAN network, and an information channel is formed between WIFI module one and WIFI module two via the WLAN network.

2. The artificial intelligence lifting system accessory according to claim 1, It is characterized in that One side of the moving piece is provided with an arched wall surface for pressing and fastening, and the other side is provided with a pressure-bearing port; one end of the fastening screw made of stainless steel is provided with a circular embedding port, and the circular embedding port is movably embedded in the opening for the moving piece.

3. The fitting for the artificial intelligence lowering and lifting system according to claim 2, characterized in that, a limiting block is arranged in the pressure-bearing port.

4. The fitting for the artificial intelligence lowering and lifting system according to claim 1, characterized in that, the other end of the fastening screw made of stainless steel is provided with a limiting piece, and the limiting piece is fixedly connected in the fastening handle made of polypropylene material.

5. The fitting for the artificial intelligence lowering and lifting system according to claim 1, characterized in that, a quick-thread screw is arranged on the fastening protruding piece made of polypropylene material, and the quick-thread screw is located above the fastening handle made of polypropylene material.

6. A method for using the fitting for the artificial intelligence lowering and lifting system, using the fitting for the artificial intelligence lowering and lifting system according to claim 1, the method includes that height information is transmitted to WIFI module two through WIFI module one, characterized in that, the method for transmitting the height information to WIFI module two through WIFI module one specifically includes the following methods: (1) WIFI module one respectively establishes wireless connections with several wireless routers in the WLAN network; For the wireless routers in the WLAN network equipped with the information link between WIFI module one and WIFI module two through the WLAN network in the removal configuration mode, WIFI module one can establish a wireless connection in the removal configuration mode with it; in actual application, WIFI module one can establish a wireless connection in the removal configuration mode with more than one wireless router in the WLAN network among several wireless routers in the WLAN network. When WIFI module one uses the wireless connection in the removal configuration mode to perform the transmission of height message information, as long as there is a transmission requirement for height message information, it can directly use the information link between WIFI module one and WIFI module two through the WLAN network in the removal configuration mode to perform the transmission of height message information; (2) Transmit height message information through the removal configuration mode with at least one wireless router in the WLAN network among the several wireless routers in the WLAN network, and the network layer synchronously transmits the redundant transmitted height message information to the network layer of the wireless routers in the WLAN network through the several wireless connections respectively established with the several wireless routers in the WLAN network; WIFI module 1 can transmit altitude message information to at least one wireless router in the WLAN network among several wireless routers in the WLAN network via the de-configuration method. Moreover, the network layer of WIFI module 1 can synchronously transmit the same redundant altitude message information to the network layer of the wireless routers in the WLAN network over several wireless connections respectively established with the wireless routers in the several WLAN networks. That is to say, the altitude message information transmitted by WIFI module 1 on each of the several wireless connections is the same altitude message information, which is the altitude message information to be transmitted; It can transmit the altitude message information processed by the compression algorithm method on more than one wireless connection with the de-configuration method; It can transmit the altitude message information in the HARQ type I manner on at least one wireless connection among the several wireless connections; In practical applications, when it is determined that the altitude message information on any one of the several wireless connections is successfully transmitted, the transmission of altitude message information on other wireless connections can be terminated. That is to say, after one of the several wireless connections achieves successful transmission, the network layer can control the abandonment of the transmission of altitude message information on other wireless connections; When the network layer of the wireless router in the WLAN network receives several altitude message information through the several wireless connections, redundant altitude message information is discarded by detecting the sequence numbers of the altitude message information.

Citation Information

Patent Citations

  • Elevating gear based on artificial intelligence

    CN207841252U

  • Accessory for lifting system under artificial intelligence

    CN209533314U