Anti-collision mesh base station and corresponding ranging ultra-wideband MESH communication system

By employing symmetrically arranged battery boxes and anti-collision unit structures in self-organizing network base stations, combined with sliding and load-reducing mechanisms, the problem of excessive weight of backpack-type network base stations is solved, improving comfort and stability when carrying them and reducing the risk of damage.

CN116321862BActive Publication Date: 2026-02-27SHENZHEN THE RICE TECH CO LTD
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Patent Information

Application Number
CN202310340909.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-09
Publication Date
2026-02-27
Estimated Expiration
2041-11-09

AI Technical Summary

Technical Problem

Existing backpack-style network base stations are heavy, which can easily cause fatigue for users when carrying them, and there is also the risk of them tipping backward and falling and being damaged by collisions.

Method used

A collision-resistant self-organizing network base station was designed, which adopts a symmetrically arranged battery box and self-organizing network box, combined with a collision-resistant unit, soft rubber rod and vacuum ball structure, and improves the stability and comfort of the device through sliding mechanism and load reduction mechanism.

Benefits of technology

It improves comfort and stability when carrying the device, reduces the risk of backward tilting and the possibility of collision damage, and enhances the overall balance of the device and the user's operating comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a collision-proof self-organizing network base station and a corresponding ranging unlimited hop MESH communication system. The collision-proof self-organizing network base station comprises a self-organizing network box body and a battery box, and two groups of battery boxes are symmetrically arranged on the two side walls of the self-organizing network box body; a plurality of groups of first anti-collision units are arranged in a rectangular array on one side outer wall of the self-organizing network box body, each group of first anti-collision units is movably connected with the outer wall of the self-organizing network box body, and a plurality of groups of second anti-collision units are arranged in a rectangular array on the outer wall of the battery box, each group of second anti-collision units is movably connected with the outer wall of the battery box. The application can reduce the damage of the self-organizing network base station caused by external impact and resist the risk of collision damage. Meanwhile, the self-organizing network base station can reduce the bearing force of the back, reduce the risk of backward inclination, and reduce the feeling of weight of the user when the user carries the self-organizing network base station.
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Description

[0001] This application is a divisional application, the original application's application number is: "202111322141.1", the application date is: "November 09, 2021", and the invention name is: "Backpack device for ad hoc network base station and ranging unlimited hop MESH communication system". TECHNICAL FIELD

[0002] The application belongs to the technical field of ad hoc network communication, and particularly relates to an anti-collision ad hoc network base station and a corresponding ranging unlimited hop MESH communication system. BACKGROUND

[0003] The portable base station based on the centerless ad hoc network technology can automatically form a wireless network upon startup, uses the same frequency point throughout the network, and does not rely on any public network and private network for ultra-long distance communication, so as to create a centerless ad hoc network communication system that is flexible, mobile, strong in anti-destruction, and high in security.

[0004] The centerless ad hoc network communication technology innovatively realizes multi-hop multi-level relay, same frequency broadcasting networking, and signal superposition and merging, perfectly realizes the centerless self-organizing communication network, and solves the communication problems of multi-point broadcasting forwarding and signal interference in the overlapping area.

[0005] A specific ad hoc network base station communication system can be as shown in the figure. Figure 15 The communication system 150 includes a same frequency networking base station 151, a video scheduling platform 152, an ad hoc network base station 153, and a single soldier handheld / back-mounted networking base station 154; wherein the video scheduling platform 152 is connected with the same frequency networking base station 151 through a communication optical fiber 155, the ad hoc network base station 153, the same frequency networking base station 151, and the single soldier handheld / back-mounted networking base station 154 are linked through a relay communication station 156.

[0006] In order to improve the flexibility of the ad hoc network base station, the single soldier handheld / back-mounted networking base station is added, wherein the back-mounted networking base station has the advantages of high weight, wider signal coverage range, etc. and is used more. However, the existing back-mounted networking base station generally has a heavy weight, and the user is easy to feel tired when carrying it. In addition, since the weight is all on the back of the user, the risk of backward tilting is easy to occur, which reduces the carrying comfort and also exists the risk of falling and collision damage. SUMMARY

[0007] In view of the above problems, the application provides an anti-collision ad hoc network base station, which comprises an ad hoc network box body and a battery box, and two groups of battery boxes are symmetrically arranged on the side walls of the ad hoc network box body.

[0008] The outer wall of one side of the self-organizing network box is provided with a plurality of groups of first anti-collision units in a rectangular array, each group of the first anti-collision units is movably connected with the outer wall of the self-organizing network box, and the outer wall of the battery box is provided with a plurality of groups of second anti-collision units in a rectangular array, each group of the second anti-collision units is movably connected with the outer wall of the battery box.

[0009] In the application, the structure of the second anti-collision unit is the same as that of the first anti-collision unit; the first anti-collision unit and the second anti-collision unit both comprise an anti-collision capsule mounting plate and an anti-collision capsule body.

[0010] The anti-collision capsule mounting plate is fixedly installed on the side wall close to the self-organizing network box or the battery box, and a movable buckle for movable connection is arranged on the anti-collision capsule mounting plate.

[0011] The first anti-collision unit and the second anti-collision unit both further comprise a plurality of groups of first soft rubber rods, a plurality of groups of second soft rubber rods and a vacuum ball.

[0012] The plurality of groups of first soft rubber rods and the plurality of groups of second soft rubber rods are arranged in a rectangular array in the anti-collision capsule body, and the first soft rubber rods and the second soft rubber rods are arranged vertically, and the vacuum ball is fixedly installed at the joint of the first soft rubber rods and the second soft rubber rods.

[0013] Further, a sealing plug is fixedly installed on the side wall of the anti-collision capsule mounting plate away from the anti-collision capsule body.

[0014] In the application, a bottom groove is arranged at the bottom of the outer wall of one side of the self-organizing network box away from the first anti-collision unit, the bottom groove has a fan ring structure, and a soft pad is fixedly installed on the inner wall of the bottom groove.

[0015] In the application, the anti-collision self-organizing network base station further comprises a backpack unit, the backpack unit comprises a backpack plate, a supporting plate, a first limiting sleeve, a weight reduction mechanism, a second limiting sleeve, a shoulder strap and a pull belt.

[0016] The supporting plate is arranged at the bottom of one side wall of the backpack plate and is used for supporting the self-organizing network box, two groups of shoulder straps are arranged on the other side wall of the backpack plate, the first limiting sleeve is movably connected at the side edge of the supporting plate away from the backpack plate, the second limiting sleeve is arranged at the top of the first limiting sleeve and is movably connected on the backpack plate, the weight reduction mechanism is arranged between the first limiting sleeve and the second limiting sleeve, and one group of the pull belts is arranged on each of the shoulder straps and is movably connected with the battery box.

[0017] The load reduction mechanism comprises a stretching ball and two groups of anti-vibration plates, the two groups of anti-vibration plates are symmetrically installed on the opposite two side walls of the first limiting sleeve and the second limiting sleeve, and the stretching ball is located in the gap between the two groups of anti-vibration plates.

[0018] The stretching ball comprises a plurality of groups of fan ring-shaped structure stretching ball outer plates, a plurality of groups of the stretching ball outer plates can form a spherical structure, and a gap is arranged between adjacent two groups of the stretching ball outer plates; an inner stretching ball is arranged in the spherical structure, a group of stretching springs are arranged on the inner wall of each group of the stretching ball outer plates, and the other end of the stretching spring is fixedly installed on the outer wall of the inner stretching ball.

[0019] Further, two groups of stretching belts are installed on each group of the stretching ball outer plates, and the two groups of stretching belts are installed on the two groups of anti-vibration plates respectively.

[0020] In addition, a heat dissipation fan is fixedly installed on one side wall of the self-organizing network box, and the heat dissipation fan is in communication with the inner cavity of the self-organizing network box.

[0021] Two groups of the battery boxes are slidably connected to the two side walls perpendicular to the heat dissipation fan on the self-organizing network box through first sliding mechanisms, and the battery boxes can slide horizontally to the side close to the back strap through the first sliding mechanisms.

[0022] Further, a group of first positioning bolts are arranged at the two side edges of the top of the self-organizing network box respectively, the bottom of the first positioning bolt is movably installed on the first sliding mechanism, a second positioning bolt is arranged on the side close to the back strap of the first positioning bolt, and the bottom of the second positioning bolt is movably installed on the first sliding mechanism.

[0023] The first sliding mechanism comprises a first sliding rod and a first sliding block; a first sliding groove is formed in the side wall perpendicular to the back strap of the self-organizing network box, the first sliding rod is installed in the first sliding groove, one end of the first sliding block is slidably connected to the first sliding rod, the other end of the first sliding block penetrates to the outside of the first sliding groove and is installed on the shell of the battery box, and a bolt connecting block is fixedly installed on the top of the first sliding block; the bottoms of the first positioning bolt and the second positioning bolt can penetrate into the first sliding groove and are threadedly connected to the bolt connecting block.

[0024] A group of second sliding mechanisms are arranged below the two first sliding grooves respectively, the second sliding mechanism comprises a second sliding rod and a second sliding block; a second sliding groove is located below the first sliding groove, and the second sliding rod is installed in the second sliding groove.

[0025] One end of the second sliding block is slidably connected to the second sliding rod, and the other end of the second sliding block penetrates to the outside of the second sliding groove and is fixedly installed on the shell of the battery box.

[0026] The application also comprises a ranging infinite hop MESH communication system using the anti-collision self-organizing network base station, which further comprises a communication interface, a power control module, a wireless communication module and a processor;

[0027] The power control module, the wireless communication module and the processor are fixedly installed in the self-organizing network box body, a plurality of groups of the communication interfaces are formed on the self-organizing network box body, the plurality of groups of the communication interfaces are respectively connected with the power control module, the wireless communication module and the processor in signal, and a group of power interfaces are respectively arranged below the self-organizing network box body, and the power control module and the battery box are electrically connected through the power interface.

[0028] The application has the following beneficial effects:

[0029] 1. When the carrier walks, the shaking force generated by the self-organizing network box body due to vibration is transmitted to the stretch ball outer plate, so that the distance between the groups of stretch ball outer plates changes, then the shaking force generated during walking is absorbed by the group of stretch springs corresponding to the shaking force, so that the pulling caused by shaking does not directly act on the carrier, and then the weight of the self-organizing network box body is further dispersed to the two groups of battery box bodies through the two groups of pull belts, thereby further improving the overall balance of the device and increasing the stability of the self-organizing network box body during movement, thereby improving the comfort of the carrier when carrying the device.

[0030] 2. When the self-organizing network assembly needs to be carried and moved, first, the two groups of battery boxes are horizontally moved to the side close to the carrying strap through the first sliding mechanism. When the user carries the self-organizing network assembly on the back, the weight of the two groups of battery boxes is moved from the back of the user to the two sides, so that the force on the back and the two sides of the user is more evenly distributed when the user carries and moves the self-organizing network assembly. The load on the back is reduced, the risk of leaning back is reduced, and the feeling of carrying is also reduced.

[0031] 3. When the self-organizing network box body is impacted by external force, it will first contact the anti-collision capsule body and transmit the impact force to one or more groups of first soft rubber rods and second soft rubber rods corresponding thereto. Since the first soft rubber rods and the second soft rubber rods are arranged in cross, the impact force is immediately dispersed to other groups of first soft rubber rods and second soft rubber rods. The impact force is further absorbed by the vacuum balls in each group, the buffer force of the first anti-collision unit is improved, the damage to the self-organizing network base station caused by external impact is reduced, and the risk of collision damage is reduced. The anti-collision capsule mounting plate is movably connected with the self-organizing network box body through the fixed buckle, when one of the first anti-collision units is damaged, it can be replaced by removing the damaged first anti-collision unit alone.

[0032] 4. When the user carries the self-organizing network assembly, the user can place the two arms in the horizontal grooves and vertical grooves on the two sides, so that the user can further share the weight of the battery box through the two arms, reduce the bearing force on the back, avoid the abrasion of the battery box body on the skin of the two arms, and improve the comfort of the user when carrying.

[0033] Other features and advantages of the present application will be set forth in the descriptions that follow, and in part will be apparent from the description, or can be learned by practice of the present application. The objects and other advantages of the present application will be realized and attained by the structure particularly pointed out in the description and claims. BRIEF DESCRIPTION OF DRAWINGS

[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0035] Figure 1 A structural schematic diagram of a self-organizing network base station according to an embodiment of the present application is shown

[0036] Figure 2 A structural schematic diagram of a self-organizing network assembly according to an embodiment of the present application is shown

[0037] Figure 3 A rear view schematic diagram of a self-organizing network assembly according to an embodiment of the present application is shown

[0038] Figure 4 A structural schematic diagram of a self-organizing network box according to an embodiment of the present application is shown

[0039] Figure 5 A sectional view schematic diagram of a self-organizing network box according to an embodiment of the present application is shown

[0040] Figure 6 A structural schematic diagram of a first sliding mechanism according to an embodiment of the present application is shown

[0041] Figure 7 A structural schematic diagram of a second sliding mechanism according to an embodiment of the present application is shown

[0042] Figure 8 A structural schematic diagram of a self-organizing network box after moving the battery box according to an embodiment of the present application is shown

[0043] Figure 9Fig. 1 shows a structural schematic diagram of a battery box according to an embodiment of the present application;

[0044] Figure 10 Fig. 3 shows a top sectional schematic diagram of a first anti-collision unit according to an embodiment of the present application;

[0045] Figure 11 Fig. 5 shows a structural schematic diagram of a carrying unit according to an embodiment of the present application;

[0046] Figure 12 Fig. 7 shows a rear schematic diagram of a carrying plate according to an embodiment of the present application;

[0047] Figure 13 Fig. 9 shows a structural schematic diagram of a load-reducing mechanism according to an embodiment of the present application;

[0048] Figure 14 Fig. 11 shows a sectional schematic diagram of a tensile ball according to an embodiment of the present application;

[0049] Figure 15 Fig. 13 shows a structural schematic diagram of an existing ad-hoc network base station communication system.

[0050] In the figure: 100, ad-hoc network assembly; 110, ad-hoc network box; 120, first sliding mechanism; 121, first sliding groove; 122, first sliding rod; 123, first sliding block; 124, bolted block; 130, second sliding mechanism; 131, second sliding groove; 132, second sliding rod; 133, second sliding block; 140, communication interface; 150, power supply interface; 160, power supply control module; 170, wireless communication module; 180, processor; 190, first positioning bolt; 191, second positioning bolt; 200, battery box; 210, battery box body; 220, vertical groove; 230, horizontal groove; 240, buffer cushion; 300, first anti-collision unit; 310, anti-collision bag mounting plate; 320, fixed buckle; 330, anti-collision bag body; 340, first soft rubber stick; 350, second soft rubber stick; 360, vacuum ball; 370, sealing plug; 400, second anti-collision unit; 500, heat dissipation fan; 600, carrying unit; 610, carrying plate; 611, bottom groove through hole; 620, supporting plate; 630, first limiting sleeve; 640, load-reducing mechanism; 641, anti-vibration plate; 642, tensile ball; 6421, tensile ball outer plate; 6422, inner tensile ball; 6423, tensile spring; 643, tensile belt; 650, second limiting sleeve; 660, carrying strap; 670, pulling belt; 700, bottom groove. DETAILED DESCRIPTION

[0051] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0052] The embodiment of the present application provides a self-organizing network base station, which comprises a self-organizing network assembly 100, a heat dissipation fan 500, a backpack unit 600 and two groups of battery boxes 200. Figure 1 、 Figure 2 and Figure 3 As shown in the drawings, the self-organizing network assembly 100 is movably installed on the backpack unit 600.

[0053] The heat dissipation fan 500 is fixedly installed on one side wall of the self-organizing network assembly 100, and the heat dissipation fan 500 is in communication with the inner cavity of the self-organizing network assembly 100.

[0054] The two groups of battery boxes 200 are respectively slidably connected to the two side walls of the self-organizing network assembly 100 and the heat dissipation fan 500, and the two groups of battery boxes 200 are electrically connected to the self-organizing network assembly 100. When one group of battery boxes 200 is out of power, the other group of battery boxes 200 can be automatically switched to, thereby prolonging the use time of the self-organizing network assembly 100.

[0055] A plurality of groups of first anti-collision units 300 are arranged in a rectangular array on the outer wall of the self-organizing network assembly 100 close to the heat dissipation fan 500, and each group of the first anti-collision units 300 is movably clamped to the outer wall of the self-organizing network assembly 100. The first anti-collision units 300 can reduce the damage to the self-organizing network assembly 100 caused by external impact.

[0056] A plurality of groups of second anti-collision units 400 are arranged in a rectangular array on the outer wall of the battery box 200, and each group of the second anti-collision units 400 is movably clamped to the outer wall of the battery box 200. The structure of the second anti-collision units 400 is the same as that of the first anti-collision units 300. The second anti-collision units 400 can reduce the damage to the battery box 200 caused by external impact.

[0057] A bottom groove 700 is formed in the bottom of the outer wall of the self-organizing network assembly 100 away from the first anti-collision units 300, the bottom groove 700 has a fan ring structure, and a bottom groove soft pad is fixedly installed on the inner wall of the bottom groove 700.

[0058] When the user carries the self-organizing network assembly 100 on the back, the waist of the user is just in the bottom groove 700 of the fan ring structure, and the waist of the user is protected by the bottom groove 700, reducing the waist fatigue caused by long-term carrying of the self-organizing network assembly 100.

[0059] The self-organizing network assembly 100 comprises a self-organizing network box 110, two groups of first sliding mechanisms 120 and two groups of second sliding mechanisms 130. As shown in Figure 4 and Figure 5 The heat dissipation fan 500 is installed on one side wall of the self-organizing network box 110. Two groups of the first sliding mechanisms 120 are symmetrically arranged on two side walls of the self-organizing network box 110 perpendicular to the heat dissipation fan 500. Two groups of the second sliding mechanisms 130 are arranged below the two groups of the first sliding mechanisms 120 respectively. The side of the first sliding mechanism 120 and the second sliding mechanism 130 away from the self-organizing network box 110 is fixedly installed on the battery box 200. The battery box 200 can move horizontally away from the heat dissipation fan 500 through the first sliding mechanism 120 and the second sliding mechanism 130.

[0060] The self-organizing network assembly 100 further comprises a power control module 160, a wireless communication module 170 and a processor 180. As shown in

[0061] The first sliding mechanism 120 comprises a first sliding rod 122 and a first sliding block 123. As shown in Figure 6 The side wall of the self-organizing network box 110 perpendicular to the heat dissipation fan 500 is provided with a first sliding groove 121, and the first sliding rod 122 is fixedly installed in the first sliding groove 121. One end of the first sliding block 123 is slidably connected to the first sliding rod 122, and the other end of the first sliding block 123 penetrates to the outside of the first sliding groove 121 and is fixedly installed on the shell of the battery box 200. The top of the first sliding block 123 is fixedly installed with a bolt connecting block 124.

[0062] The second sliding mechanism 130 comprises a second sliding rod 132 and a second sliding block 133. As shown in Figure 7As shown, a second sliding groove 131 is formed on the side wall of the self-organizing mesh housing 110 perpendicular to the cooling fan 500, and the second sliding groove 131 is located directly below the first sliding groove 121. The second sliding rod 132 is fixedly installed in the second sliding groove 131. One end of the second slider 133 is slidably connected to the second sliding rod 132, and the other end of the second slider 133 extends through to the outside of the second sliding groove 131 and is fixedly installed on the housing of the battery box 200.

[0063] For example, such as Figure 4 and Figure 5 As shown, a set of first positioning bolts 190 are respectively provided on the top two sides of the self-organizing mesh box 110. The bottom of the first positioning bolt 190 can pass through the first sliding groove 121 and is threadedly connected to the bolt connecting block 124. A second positioning bolt 191 is provided on the side of the first positioning bolt 190 away from the cooling fan 500. The bottom of the second positioning bolt 191 can pass through the first sliding groove 121 and is threadedly connected to the bolt connecting block 124.

[0064] When the self-organizing network assembly 100 is in a stationary state, the two sets of battery boxes 200 are parallel to the self-organizing network box 110, and the bottoms of the two sets of first positioning bolts 190 are respectively threaded onto the two sets of bolt connecting blocks 124.

[0065] For example, such as Figure 8 As shown, when the self-organizing network assembly 100 needs to be moved while being carried, firstly, the first positioning bolt 190 is removed from the bolt connecting block 124, and then both sets of battery boxes 200 are simultaneously pushed horizontally to the side away from the cooling fan 500. This causes the first slider 123 and the second slider 133 to slide on the first slide bar 122 and the second slide bar 132, respectively. When the bolt connecting block 124 moves directly below the second positioning bolt 191, the pushing is stopped, and then the bottom thread of the second positioning bolt 191 is threaded onto the bolt connecting block 124 to prevent the battery boxes 200 from shifting due to vibration when the self-organizing network assembly 100 is moved.

[0066] After operation, the user carries the carrying device 600 on their shoulder, allowing the self-organizing mesh housing 110 to fit snugly against their back. Then, by moving the battery box 200, the weight of the battery box 200 is shifted forward to the user's sides, resulting in a more even distribution of force on the back and sides when the user moves while carrying the self-organizing mesh assembly 100. This reduces the load on the back, thereby decreasing the risk of leaning backward and also reducing the perceived weight burden on the user.

[0067] The battery box 200 includes a battery box body 210. For example, as shown... Figure 9As shown, the battery box body 210 is fixedly connected with the first slider 123 and the second slider 133. The battery box body 210 can be horizontally moved away from the side of the ad hoc network box body 110 where the heat dissipation fan 500 is located through the first slider 123 and the second slider 133. The vertical groove 220 is formed on the side wall of the ad hoc network box body 110 close to the battery box body 210. The bottom of the vertical groove 220 is communicated with the horizontal groove 230. The other end of the horizontal groove 230 is extended away from the side of the ad hoc network box body 110 where the heat dissipation fan 500 is located, and is in an open structure. The inner walls of the vertical groove 220 and the horizontal groove 230 are fixedly installed with the buffer soft pads 240.

[0068] When the movement of the battery box body 210 is completed, the user can place the arms in the horizontal groove 230 and the vertical groove 220 on both sides, so as to further share the weight of the battery box 200 through the arms, reduce the bearing force on the back, avoid the abrasion of the skin of the arms by the battery box body 210, and improve the comfort of the user when carrying.

[0069] The first anti-collision unit 300 comprises an anti-collision bag mounting plate 310, an anti-collision bag body 330, a plurality of groups of first soft rubber rods 340 and a plurality of groups of second soft rubber rods 350. As shown, Figure 10 As shown, the anti-collision bag mounting plate 310 is fixedly installed with the fixed buckle 320 on the side wall close to the ad hoc network box body 110. The anti-collision bag mounting plate 310 is movably connected to the outer wall of the ad hoc network box body 110 through the fixed buckle 320. The anti-collision bag body 330 is fixedly installed on the side wall of the anti-collision bag mounting plate 310 away from the fixed buckle 320. The plurality of groups of first soft rubber rods 340 and the plurality of groups of second soft rubber rods 350 are arranged in a rectangular array in the anti-collision bag body 330, and the first soft rubber rods 340 and the second soft rubber rods 350 are arranged vertically. The vacuum balls 360 are fixedly installed at the junctions of the first soft rubber rods 340 and the second soft rubber rods 350. The sealing plugs 370 are fixedly installed on the side wall of the anti-collision bag mounting plate 310 away from the anti-collision bag body 330.

[0070] When the self-organizing network box 110 is impacted by external force, it will first contact the anti-collision capsule body 330 and transmit the impact force to one or more groups of first soft rubber rods 340 and second soft rubber rods 350 corresponding thereto. Then, due to the rectangular array distribution of the first soft rubber rods 340 and the second soft rubber rods 350 and the mutual intersection arrangement, the one or more groups of first soft rubber rods 340 and second soft rubber rods 350 subjected to the impact force will immediately disperse the impact force to other groups of first soft rubber rods 340 and second soft rubber rods 350. At the same time, the impact force is further absorbed by the groups of vacuum balls 360 located at the junctions of the first soft rubber rods 340 and the second soft rubber rods 350, thereby improving the buffering force of the first anti-collision unit 300. Moreover, the anti-collision capsule mounting plate 310 is movably clamped with the self-organizing network box 110 through the fixing buckle 320. When one group of first anti-collision units 300 is damaged, it only needs to be replaced by being taken down alone.

[0071] The back-carrying unit 600 includes a back-carrying plate 610, a supporting plate 620, a first limiting sleeve 630, and a second limiting sleeve 650. As shown in Figure 11 and Figure 12 The supporting plate 620 is fixedly installed at the bottom edge of one side wall of the back-carrying plate 610, and the supporting plate 620 is provided with a supporting plate limiting groove. The self-organizing network box 110 is located in the supporting plate limiting groove. The side wall of the back-carrying plate 610 away from the supporting plate 620 is a fan ring structure, and the bottom is provided with a bottom groove through hole 611. Two groups of shoulder straps 660 are symmetrically installed on both sides of the bottom groove through hole 611, and one group of pull belts 670 is installed on each group of shoulder straps 660. The other end of the pull belt 670 is movably installed on the battery box body 210. The first limiting sleeve 630 is movably clamped at the side edge of the supporting plate 620 away from the back-carrying plate 610. The top of the first limiting sleeve 630 is provided with a load reduction mechanism 640, and the top of the load reduction mechanism 640 is fixedly connected with the second limiting sleeve 650. The other end of the second limiting sleeve 650 is movably clamped on the back-carrying plate 610.

[0072] The load reduction mechanism 640 includes a stretching ball 642 and two groups of shockproof plates 641. As shown in Figure 13 and Figure 14As shown, two groups of the anti-vibration plates 641 are symmetrically installed on the opposite two side walls of the first limiting sleeve 630 and the second limiting sleeve 650, and gaps are arranged between the two groups of the anti-vibration plates 641, and the stretching balls 642 are located in the gaps. The stretching ball 642 comprises a plurality of groups of fan-shaped ring structure stretching ball outer plates 6421, a plurality of groups of the stretching ball outer plates 6421 are combined to form a spherical structure, and gaps are arranged between adjacent two groups of the stretching ball outer plates 6421. An inner stretching ball 6422 is arranged in the spherical structure, and the center point of the inner stretching ball 6422 coincides with the center point of the spherical structure. A group of stretching springs 6423 is arranged on the inner wall of each group of the stretching ball outer plates 6421, and the other end of the stretching spring 6423 is fixedly installed on the outer wall of the inner stretching ball 6422. Two groups of stretching belts 643 are fixedly installed on each group of the stretching ball outer plates 6421, and the two groups of the stretching belts 643 are fixedly installed on the two groups of the anti-vibration plates 641 respectively.

[0073] When the self-organizing network assembly 100 needs to be moved, first, the self-organizing network box 110 is placed in the supporting plate limiting groove, then the first limiting sleeve 630 and the second limiting sleeve 650 are respectively clamped on the supporting plate 620 and the carrying plate 610 at the ends away from each other, so that the first limiting sleeve 630 and the second limiting sleeve 650 can limit the self-organizing network box 110. Then the carrying strap 660 is carried on the carrier, and after the two groups of battery box bodies 210 are unfolded, the two groups of pulling belts 670 are respectively installed on the two groups of battery box bodies 210. When the carrier walks, the jolt force generated by the self-organizing network box 110 due to vibration is transmitted to the first limiting sleeve 630 and the second limiting sleeve 650 and acts on the stretching ball outer plate 6421, so that the distance between each group of the stretching ball outer plates 6421 changes, then a group of the stretching springs 6423 corresponding to the jolt force in the direction absorbs the jolt force generated when walking, so that the pulling caused by the jolt does not directly act on the carrier, and then the weight of the self-organizing network box 110 is further dispersed to the two groups of battery box bodies 210 through the two groups of pulling belts 670, which further improves the overall balance of the device and increases the stability of the self-organizing network box 110 when moving, thereby improving the comfort of the carrier when carrying the device.

[0074] The application also provides a ranging infinite hop MESH communication system using the above-mentioned self-organizing network base station carrying device, and the specific working principle of the ranging infinite hop MESH communication system is described in detail in the above-mentioned embodiment of the self-organizing network base station.

[0075] The self-organizing network base station carrying device and the ranging unlimited hop MESH communication system of the present application can transfer the jolt force generated by the self-organizing network box to the outer plates of the stretching balls, change the distance between the groups of the stretching ball outer plates, absorb the jolt force generated when walking through the group of stretching springs corresponding to the direction of the jolt force, prevent the pulling caused by the jolt from directly acting on the carrier, and then further disperse the weight of the self-organizing network box to the two groups of battery box bodies through the two groups of belts, further improve the overall balance of the device, and increase the stability of the self-organizing network box when moving, thereby improving the comfort of the carrier when carrying the device.

[0076] When the self-organizing network assembly needs to be carried and moved, first move the two groups of battery boxes horizontally towards the side close to the carrying strap through the first sliding mechanism. When the user carries the self-organizing network assembly on the back, the weight of the two groups of battery boxes will be moved from the back of the user to the two sides. This makes the force on the back and the two sides more evenly distributed when the user carries the self-organizing network assembly, reducing the load on the back and reducing the risk of leaning back, while also reducing the feeling of weight when carrying.

[0077] When the self-organizing network box is hit by external force, it will first contact the anti-collision capsule body and transfer the impact force to one or more groups of first and second soft rubber rods corresponding to it. Since the first and second soft rubber rods are arranged in a crisscross manner, the impact force will be immediately dispersed to other groups of first and second soft rubber rods. The impact force is further absorbed by the vacuum balls in each group, improving the buffering force of the first anti-collision unit. The anti-collision capsule mounting plate is movably connected to the self-organizing network box by a fixed buckle. When one of the first anti-collision units is damaged, it can be easily replaced by removing the damaged unit.

[0078] When the user carries the self-organizing network assembly, the user can place both arms in the horizontal and vertical grooves on both sides. This not only further distributes the weight of the battery box to reduce the load on the back, but also prevents the battery box body from scratching the skin of the arms, thereby improving the comfort of the user when carrying. The user's waist is located in the bottom groove of the fan-shaped structure, which protects the user's waist and reduces the feeling of fatigue caused by long-term carrying of the self-organizing network assembly.

[0079] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can be made to the technical solutions described in the foregoing embodiments, or some technical features can be replaced by equivalents; and such modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A crash-avoiding ad hoc network base station, characterized by: The self-organizing network box (110) and the battery box (200) are provided on the two side walls of the self-organizing network box (110) in a symmetrical manner. A plurality of groups of first anti-collision units (300) are arranged in a rectangular array on one side wall of the self-organizing network box (110), each group of the first anti-collision units (300) is movably connected to the side wall of the self-organizing network box (110), and a plurality of groups of second anti-collision units (400) are arranged in a rectangular array on the outer wall of the battery box (200), each group of the second anti-collision units (400) is movably connected to the outer wall of the battery box (200). The anti-collision self-organizing network base station further comprises a backpack unit (600), the backpack unit (600) comprises a backpack plate (610), a supporting plate (620), a first limiting sleeve (630), a weight reduction mechanism (640), a second limiting sleeve (650), a shoulder strap (660) and a pull belt (670). The supporting plate (620) is arranged on the bottom of one side wall of the backpack plate (610), the supporting plate (620) is provided with a supporting plate limiting groove, two groups of shoulder straps (660) are arranged on the other side wall of the backpack plate (610), a first limiting sleeve (630) is movably connected to the edge of the supporting plate (620) away from the backpack plate (610), a second limiting sleeve (650) is arranged on the top of the first limiting sleeve (630), the second limiting sleeve (650) is movably connected to the backpack plate (610), a weight reduction mechanism (640) is arranged between the first limiting sleeve (630) and the second limiting sleeve (650), and a group of pull belts (670) are arranged on each shoulder strap (660). The weight reduction mechanism (640) comprises a stretching ball (642) and two groups of shockproof plates (641), the two groups of shockproof plates (641) are symmetrically arranged on the opposite side walls of the first limiting sleeve (630) and the second limiting sleeve (650), and the stretching ball (642) is arranged in the gap between the two groups of shockproof plates (641). The stretching ball (642) comprises a plurality of groups of fan ring-shaped stretching ball outer plates (6421), the plurality of groups of fan ring-shaped stretching ball outer plates (6421) are combined to form a spherical structure, and a gap is arranged between adjacent two groups of the fan ring-shaped stretching ball outer plates (6421), an inner stretching ball (6422) is arranged in the spherical structure, a group of stretching springs (6423) are arranged on the inner wall of each group of the fan ring-shaped stretching ball outer plates (6421), and the other end of the stretching spring (6423) is fixedly connected to the outer wall of the inner stretching ball (6422). The side wall of the self-organizing network box (110) is fixedly provided with a heat dissipation fan (500) in communication with the inner cavity of the self-organizing network box (110), and two groups of battery boxes (200) are respectively connected to the two side walls perpendicular to the heat dissipation fan (500) through first sliding mechanisms (120), and the battery boxes (200) can slide horizontally to the side close to the backpack (660) through the first sliding mechanisms (120). The self-organizing network box (110) is placed in the supporting plate limiting groove, the first limiting sleeve (630) and the second limiting sleeve (650) are respectively clamped on the supporting plate (620) and the back plate (610) at the ends away from each other, and after the two groups of battery boxes (200) are unfolded, two groups of pull belts (670) are respectively arranged on the two groups of battery boxes (200).

2. The crash-avoiding ad hoc base station of claim 1, wherein: The second anti-collision unit (400) has the same structure as the first anti-collision unit (300); the first anti-collision unit (300) and the second anti-collision unit (400) both include an anti-collision capsule mounting plate (310) and an anti-collision capsule body (330). The anti-collision capsule mounting plate (310) is fixedly provided with a movable clamping fixing buckle (320) on the side wall close to the self-organizing network box (110) or the side wall close to the battery box (200), and the anti-collision capsule body (330) is fixedly installed on the side wall away from the fixing buckle (320) of the anti-collision capsule mounting plate (310).

3. The crash-avoiding ad hoc network base station of claim 2, wherein: The first anti-collision unit (300) and the second anti-collision unit (400) also include a plurality of groups of first soft rubber rods (340), a plurality of groups of second soft rubber rods (350), and a vacuum ball (360). A plurality of groups of the first soft rubber rods (340) and a plurality of groups of the second soft rubber rods (350) are arranged in a rectangular array in the anti-collision capsule body (330), and the first soft rubber rods (340) and the second soft rubber rods (350) are arranged vertically, and the vacuum ball (360) is fixedly installed at the junction of the first soft rubber rods (340) and the second soft rubber rods (350).

4. The crash-avoiding ad hoc network base station of claim 3, wherein: The side wall of the anti-collision capsule mounting plate (310) away from the anti-collision capsule body (330) is fixedly provided with a sealing plug (370).

5. The crash hardened ad hoc base station of claim 1, wherein: The bottom of the outer wall of the self-organizing network box (110) away from the first anti-collision unit (300) is provided with a bottom groove (700), the bottom groove (700) has a fan ring structure, and a bottom groove soft pad is fixedly installed on the inner wall of the bottom groove (700).

6. The crash- hardened ad-hoc base station of claim 1, wherein: Each group of the stretch ball outer plates (6421) is provided with two groups of stretch belts (643), and the two groups of stretch belts (643) are respectively arranged on the two groups of shockproof plates (641).

7. The crash- hardened ad hoc base station of claim 1, wherein: The self-organizing network box (110) is provided with a group of first positioning bolts (190) at both sides of the top edge, respectively, the bottom of the first positioning bolt (190) is movably installed on the first sliding mechanism (120); the side of the first positioning bolt (190) close to the carrying strap (660) is provided with a second positioning bolt (191), the bottom of the second positioning bolt (191) is movably installed on the first sliding mechanism (120); The first sliding mechanism (120) comprises a first sliding rod (122) and a first sliding block (123); a first sliding groove (121) is formed on the side wall of the self-organizing network box (110) perpendicular to the carrying strap (660), the first sliding rod (122) is installed in the first sliding groove (121); one end of the first sliding block (123) is slidably connected to the first sliding rod (122), the other end of the first sliding block (123) penetrates to the outside of the first sliding groove (121) and is installed on the shell of the battery box (200); a bolt connecting block (124) is fixedly installed on the top of the first sliding block (123); the bottoms of the first positioning bolt (190) and the second positioning bolt (191) can penetrate into the first sliding groove (121) and be threadedly connected to the bolt connecting block (124); A group of second sliding mechanisms (130) are respectively arranged below the two groups of first sliding grooves (121), the second sliding mechanism (130) comprises a second sliding rod (132) and a second sliding block (133); a second sliding groove (131) is located below the first sliding groove (121), the second sliding rod (132) is installed in the second sliding groove (131); One end of the second sliding block (133) is slidably connected to the second sliding rod (132), the other end of the second sliding block (133) penetrates to the outside of the second sliding groove (131) and is fixedly installed on the shell of the battery box (200).

8. A ranging ultrawide hop MESH communication system characterized by: The anti-collision self-organizing network base station of any one of claims 1-7 further comprises a communication interface (140), a power control module (160), a wireless communication module (170) and a processor (180); The power control module (160), the wireless communication module (170) and the processor (180) are fixedly installed in the self-organizing network box (110), a plurality of groups of communication interfaces (140) are formed on the self-organizing network box (110), the plurality of groups of communication interfaces (140) are respectively signal connected to the power control module (160), the wireless communication module (170) and the processor (180), a group of power interfaces (150) are respectively arranged below the self-organizing network box (110), the power control module (160) and the battery box (200) are electrically connected through the power interface (150).

Citation Information

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