Backpack unit and corresponding ad hoc network base station
By designing a load-reducing mechanism with a load-reducing mechanism containing a stretch ball and a shock-resistant plate, the fatigue and rolling risks caused by the heavy weight of the load-type networking base station are solved, and higher load-resistance comfort and stability are achieved.
Patent Information
- Application Number
- CN202310339613.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-11-09
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2041-11-09
AI Technical Summary
The existing load-bearing networking base stations are heavier, and users are prone to fatigue when carrying, and there is a risk of backturning, reducing the comfort of carrying.
A loading unit is designed, including a loading plate, pallet, limit sleeve, load reduction mechanism, a carrier and a pulling belt. The tension ball and shock-resistant plate in the burden-reducing mechanism absorb the bump force, dispersing the weight of the self-organized mesh box to the two sets of battery boxes, improving overall balance and stability.
It effectively absorbs the bumpy force during walking, reduces the weight-bearing feeling when the carrying person is carrying, improves the overall balance and stability of the carrying device, thereby improving the comfort of the carrying person.
Smart Images

Figure CN116347821B_ABST
Abstract
Description
[0001] This application is a divisional application. The application number of the original application is: "202111322141.1", the application date is: "November 9, 2021", and the name of the invention is: "Backpack device for self-organizing network base station and ranging infinite hop MESH communication system". Technical Field
[0002] The invention belongs to the technical field of self-organizing network communication, and in particular relates to a backpack unit and a corresponding self-organizing network base station. Background Art
[0003] The portable base station based on the centerless self-organizing network technology can automatically form a wireless network when it is turned on. The entire network uses the same frequency and does not rely on any public or private network for ultra-long-distance communications. It can create a flexible, mobile, resistant and highly confidential centerless self-organizing network communication system.
[0004] The centerless self-organizing communication technology innovatively realizes the characteristics of multi-hop and multi-level relay, same-frequency and simulcast networking, and signal overlapping and merging, perfectly realizing a centerless self-organizing communication network and solving the communication problems of multi-point simulcast forwarding and signal interference in overlapping areas.
[0005] The specific ad hoc base station communication system can be as follows Fig.15 As shown, the communication system 150 includes a co-frequency networking base station 151, a video scheduling platform 152, a self-organizing networking base station 153 and a single-soldier handheld / backpack networking base station 154; wherein the video scheduling platform 152 is connected to the co-frequency networking base station 151 via a communication optical fiber 155, and the self-organizing base station 153, the co-frequency networking base station 151 and the single-soldier handheld / backpack networking base station 154 are linked via a relay communication station 156.
[0006] In order to improve the flexibility of the self-organizing base station, the communication system adds a single-soldier handheld\backpack networking base station, among which the backpack networking base station is more commonly used due to its high load capacity and wider signal coverage. However, the existing backpack networking base stations are generally heavy, and users are easily fatigued when carrying them. In addition, since the weight is all on the back of the user, it is easy to tilt backward, thereby reducing the carrying comfort. Summary of the invention
[0007] In view of the above problems, the present invention provides a carrying unit, which includes a carrying plate, a supporting plate, a first limiting sleeve, a load-reducing mechanism, a second limiting sleeve, a shoulder strap and a drawstring;
[0008] A support plate is installed at the bottom of one side wall of the backpack plate, and the support plate is used to support the self-organizing network assembly. Two sets of shoulder straps are installed on the other side wall of the backpack plate. A first limiting sleeve is movably clamped at the edge of the side of the support plate away from the backpack plate, a second limiting sleeve is provided on the top of the first limiting sleeve, and the other end of the second limiting sleeve is movably clamped on the backpack plate, a load-reducing mechanism is provided between the first limiting sleeve and the second limiting sleeve, and a set of drawstrings are installed on the shoulder straps, and the other end of the drawstrings is used for movably mounting with the self-organizing network assembly;
[0009] The load-reducing mechanism comprises a stretching ball and two groups of anti-seismic plates, the two groups of anti-seismic plates are symmetrically mounted on two opposite side walls of the first limiting sleeve and the second limiting sleeve; the stretching ball is located in the gap between the two groups of anti-seismic plates.
[0010] In the present invention, the stretching ball comprises several groups of stretching ball outer plates with fan-ring structures, and several groups of the stretching ball outer plates can be combined to form a spherical structure, and gaps are provided between two adjacent groups of the stretching ball outer plates; an inner stretching ball is provided in the spherical structure, and a group of stretching springs is provided on the inner wall of each group of the stretching ball outer plates, and the other end of the stretching spring is fixedly mounted on the outer wall of the inner stretching ball.
[0011] Wherein, the center point of the inner stretching ball coincides with the center point of the spherical structure.
[0012] In addition, two groups of stretching belts are installed on the outer plates of each group of stretching balls, and the two groups of stretching belts are respectively installed on two groups of earthquake-resistant plates.
[0013] In the present invention, a pallet limiting groove is provided on the pallet, and the ad hoc network assembly is located in the pallet limiting groove.
[0014] In the present invention, a side wall of the backpack away from the support plate is a fan-shaped ring structure, and a bottom groove through hole is opened at the bottom, and the two groups of shoulder straps are symmetrically arranged on both sides of the bottom groove through hole.
[0015] The present invention also includes an ad hoc network base station, which uses the above-mentioned backpack unit, and also includes an ad hoc network box, two sets of first sliding mechanisms, and a battery box; the two sets of the first sliding mechanisms are symmetrically arranged on the two side walls of the ad hoc network box, and one set of the battery boxes is respectively installed on the two sets of the first sliding mechanisms;
[0016] The shoulder strap is installed on a side wall of the self-organizing network box that is perpendicular to the battery box. The battery box can slide horizontally to a side close to the shoulder strap through a first sliding mechanism, and one end of the pull strap is movably installed on the battery box.
[0017] In the present invention, a group of first positioning bolts are respectively provided at the edges of both sides of the top of the self-organizing network box, and the bottom of the first positioning bolts can be movably mounted on the first sliding mechanism; a second positioning bolt is provided on the side of the first positioning bolt close to the shoulder strap, and the bottom of the second positioning bolt can be movably mounted on the first sliding mechanism;
[0018] The first sliding mechanism includes a first sliding rod and a first sliding block; a first sliding groove is provided on a side wall of the self-organizing network box body that is perpendicular to the shoulder strap, and 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, and the other end of the first sliding block passes through the outside of the first sliding groove and is installed on the shell of the battery box; 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 both pass through the first sliding groove and be threadedly connected to the bolt connecting block.
[0019] Wherein, a group of second sliding mechanisms are respectively provided directly below the two groups of the first sliding grooves, and the second sliding mechanism includes a second sliding rod and a second sliding block; the second sliding groove is located directly below the first sliding groove, and the second sliding rod is installed in the second sliding groove;
[0020] One end of the second sliding block is slidably connected to the second sliding rod, and the other end of the second sliding block passes through the outside of the second sliding groove and is fixedly mounted on the shell of the battery box.
[0021] Furthermore, the battery box includes a battery box body; the battery box body is fixedly connected to a first slider and a second slider; and the battery box body can be horizontally moved toward a side of the self-organizing network box body close to the shoulder strap through the first slider and the second slider;
[0022] A vertical groove is provided on the outer wall of the battery box body on one side close to the self-organizing network box body, and a horizontal groove is connected to the bottom of the vertical groove. The other end of the horizontal groove extends to the side close to the shoulder strap and is an open structure; cushioning pads are fixedly installed on the inner walls of the vertical groove and the horizontal groove.
[0023] The beneficial effects of the present invention are:
[0024] 1. When the wearer walks, the bumping force generated by the self-organizing network box due to vibration will be transmitted to the outer plate of the stretching ball, causing the distance between each group of stretching ball outer plates to change. Then, a group of stretching springs in the direction corresponding to the bumping force will absorb the bumping force generated during walking, so that the pulling caused by the bump will not directly act on the wearer. Then, the weight of the self-organizing network box will be dispersed to the two battery box bodies through two groups of drawstrings, further improving the overall balance of the device and increasing the stability of the self-organizing network box when moving, thereby improving the comfort of the wearer when carrying the device.
[0025] 2. When the self-organizing network assembly needs to be carried and moved, first move the two battery boxes horizontally to the side close to the shoulder strap through the first sliding mechanism. When the user carries the self-organizing network assembly on the back, the weight of the two battery boxes will move from the user's back to the front to both sides. When the user carries the self-organizing network assembly and moves, the force on the back and both sides is more evenly distributed. The load-bearing force on the back is reduced, and the risk of backward tilting is reduced, and the user's sense of weight when carrying it is also reduced.
[0026] 3. When the self-organizing network box is hit by external force, it will first contact the anti-collision bag body and transfer the impact force to one or more groups of first soft glue sticks and second soft glue sticks corresponding to it. Since the first soft glue sticks and the second soft glue sticks are arranged crosswise, the impact force will be immediately dispersed to other groups of first soft glue sticks and second soft glue sticks. And use each group of vacuum balls to further absorb the impact force, thereby improving the buffering force of the first anti-collision unit. In addition, the anti-collision bag mounting plate is movably connected to the self-organizing network box through a fixed buckle. When one group of the first anti-collision units is damaged, it is only necessary to remove and replace the first anti-collision unit of this group separately.
[0027] 4. When the user carries the AD network assembly, he can place his arms in the horizontal and vertical grooves on both sides, which can not only further share the weight of the battery box with his arms and reduce the load-bearing force on the back, but also avoid the wear of the battery box body on the skin of the arms, thereby improving the comfort of the user when carrying it. In addition, the user's waist is just in the bottom groove of the fan ring structure, and the bottom groove protects the user's waist, reducing the waist fatigue caused by carrying the AD network assembly for a long time.
[0028] Other features and advantages of the present invention will be described in the following description, and partly become apparent from the description, or understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures pointed out in the description, claims and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0030] Figure 1 A schematic diagram showing the structure of a base station in an ad hoc network according to an embodiment of the present invention is shown.
[0031] Figure 2It shows a schematic structural diagram of a self-organizing network assembly according to an embodiment of the present invention;
[0032] Figure 3 A rear view schematic diagram of a self-organizing network assembly according to an embodiment of the present invention is shown;
[0033] Figure 4 It shows a schematic structural diagram of a self-organizing network box according to an embodiment of the present invention;
[0034] Figure 5 A schematic cross-sectional view of a self-organizing network box according to an embodiment of the present invention is shown;
[0035] Figure 6 It shows a structural schematic diagram of a first sliding mechanism according to an embodiment of the present invention;
[0036] Figure 7 It shows a structural schematic diagram of a second sliding mechanism according to an embodiment of the present invention;
[0037] Figure 8 It shows a schematic structural diagram of a battery box after being moved according to an embodiment of the present invention;
[0038] Fig. 9 A schematic structural diagram of a battery box according to an embodiment of the present invention is shown;
[0039] Fig.10 A schematic top cross-sectional view of a first anti-collision unit according to an embodiment of the present invention is shown;
[0040] Fig.11 A schematic structural diagram of a backpack unit according to an embodiment of the present invention is shown;
[0041] Fig.12 A rear view schematic diagram of a backpack according to an embodiment of the present invention is shown;
[0042] Fig.13 A schematic structural diagram of a load-reducing mechanism according to an embodiment of the present invention is shown;
[0043] Fig.14 A schematic cross-sectional view of a stretching ball according to an embodiment of the present invention is shown;
[0044] Fig.15 A structural schematic diagram of an existing ad hoc network base station communication system is shown.
[0045] In the figure: 100, self-organizing network assembly; 110, self-organizing network box; 120, first sliding mechanism; 121, first sliding groove; 122, first sliding rod; 123, first slider; 124, bolt connection block; 130, second sliding mechanism; 131, second sliding groove; 132, second sliding rod; 133, second slider; 140, communication interface; 150, power interface; 160, power 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 slot; 230, horizontal slot; 240, cushion; 300, first An anti-collision unit; 310, an anti-collision bag mounting plate; 320, a fixing buckle; 330, an anti-collision bag body; 340, a first soft glue stick; 350, a second soft glue stick; 360, a vacuum ball; 370, a sealing plug; 400, a second anti-collision unit; 500, a cooling fan; 600, a backpack unit; 610, a backpack plate; 611, a bottom groove through hole; 620, a support plate; 630, a first limiting sleeve; 640, a load-reducing mechanism; 641, an anti-vibration plate; 642, a stretching ball; 6421, an outer plate of a stretching ball; 6422, an inner stretching ball; 6423, a stretching spring; 643, a stretching belt; 650, a second limiting sleeve; 660, a shoulder strap; 670, a drawstring; 700, a bottom groove. DETAILED DESCRIPTION
[0046] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0047] The embodiment of the present invention provides an ad hoc network base station, including an ad hoc network assembly 100, a cooling fan 500, a backpack unit 600 and two battery boxes 200. For example, Figure 1 , Figure 2 and Figure 3 As shown, the self-organizing network assembly 100 is movably installed on the backpack unit 600.
[0048] The heat dissipation fan 500 is fixedly mounted on a side wall of the housing of the ad hoc network assembly 100 , and the heat dissipation fan 500 is communicated with the inner cavity of the ad hoc network assembly 100 .
[0049] The two groups of battery boxes 200 are respectively slidably connected to the two side walls of the self-organizing network assembly 100 that are perpendicular to the cooling 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, it can automatically switch to the other group of battery boxes 200, thereby extending the use time of the self-organizing network assembly 100.
[0050] 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 near the cooling fan 500, and each group of the first anti-collision units 300 is movably connected 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 force impact.
[0051] 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 connected to the outer wall of the battery box 200. The structure of the second anti-collision unit 400 is the same as that of the first anti-collision unit 300. The second anti-collision unit 400 can reduce the damage to the battery box 200 caused by external force impact.
[0052] A bottom groove 700 is provided at the bottom of the outer wall of the self-organizing network assembly 100 away from the first anti-collision unit 300 . The bottom groove 700 is a fan-shaped structure, and a bottom groove cushion is fixedly installed on the inner wall of the bottom groove 700 .
[0053] When the user carries the self-organizing network assembly 100 on the back, the user's waist is just in the bottom groove 700 of the fan-shaped structure, and the user's waist is protected by the bottom groove 700, reducing the waist fatigue caused by carrying the self-organizing network assembly 100 for a long time.
[0054] The self-organizing network assembly 100 includes a self-organizing network box 110, two sets of first sliding mechanisms 120 and two sets of second sliding mechanisms 130. For example, Figure 4 and Figure 5 As shown, the cooling fan 500 is installed on a side wall of the self-organizing network box 110. Two groups of the first sliding mechanisms 120 are symmetrically arranged on the two side walls of the self-organizing network box 110 that are perpendicular to the cooling fan 500. Two groups of the second sliding mechanisms 130 are respectively arranged directly below the two groups of the first sliding mechanisms 120. The first sliding mechanism 120 and the second sliding mechanism 130 are fixedly installed on the battery box 200 on the side away from the self-organizing network box 110. The battery box 200 can be horizontally moved to the side away from the cooling fan 500 through the first sliding mechanism 120 and the second sliding mechanism 130.
[0055] The ad hoc network assembly 100 also includes a power control module 160, a wireless communication module 170 and a processor 180. Exemplarily, the power control module 160, the wireless communication module 170 and the processor 180 are all fixedly installed in the ad hoc network box 110. The ad hoc network box 110 is provided with a plurality of communication interfaces 140, and the plurality of communication interfaces 140 are respectively connected to the power control module 160, the wireless communication module 170 and the processor 180 by signals. A power interface 150 is respectively provided directly below the two groups of the second sliding mechanisms 130, and the power control module 160 and the battery box 200 are electrically connected through the power interface 150.
[0056] The first sliding mechanism 120 includes a first sliding rod 122 and a first sliding block 123. Figure 6 As shown, a first sliding groove 121 is provided on a side wall of the self-organizing network box 110 perpendicular to the cooling fan 500, 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 passes through the outside of the first sliding groove 121 and is fixedly installed on the housing of the battery box 200. A bolt connection block 124 is fixedly installed on the top of the first sliding block 123.
[0057] The second sliding mechanism 130 includes a second sliding rod 132 and a second sliding block 133. Figure 7 As shown, a second sliding groove 131 is provided on a side wall of the self-organizing network box 110 which is 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 sliding block 133 is slidably connected to the second sliding rod 132, and the other end of the second sliding block 133 passes through the outside of the second sliding groove 131 and is fixedly installed on the shell of the battery box 200.
[0058] For example, Figure 4 and Figure 5 As shown, a group of first positioning bolts 190 are respectively provided at the two side edges of the top of the self-organizing network box 110, and the bottom of the first positioning bolt 190 can penetrate into the first sliding groove 121 and be threadedly connected to the bolt connection block 124. A second positioning bolt 191 is provided on the side of the first positioning bolt 190 away from the cooling fan 500, and the bottom of the second positioning bolt 191 can penetrate into the first sliding groove 121 and be threadedly connected to the bolt connection block 124.
[0059] When the self-organizing network assembly 100 is in a stationary state, the two battery boxes 200 are in parallel with the self-organizing network box body 110 , and the bottoms of the two first positioning bolts 190 are respectively threadedly connected to the two bolt connection blocks 124 .
[0060] For example, Figure 8 As shown, when the self-organizing network assembly 100 needs to be carried and moved, the first positioning bolt 190 is first removed from the bolt connection block 124, and then the two battery boxes 200 are simultaneously pushed horizontally to the side away from the cooling fan 500. The first slider 123 and the second slider 133 slide on the first slide bar 122 and the second slide bar 132 respectively. When the bolt connection block 124 moves to the right below the second positioning bolt 191, the pushing is stopped, and then the bottom of the second positioning bolt 191 is threadedly connected to the bolt connection block 124 to prevent the self-organizing network assembly 100 from being displaced due to vibration when moving, causing the battery box 200 to be displaced.
[0061] After the operation is completed, the user carries the carrying unit 600 on his shoulders, so that the self-organizing network box 110 can fit on the user's back. Then, by moving the battery box 200, the weight of the battery box 200 is moved forward to both sides of the user, so that when the user carries the self-organizing network assembly 100, the force on the back and both sides is more evenly distributed. The load-bearing force on the back is reduced, thereby reducing the risk of backward tilting, and also reducing the user's sense of weight when carrying.
[0062] The battery box 200 includes a battery box body 210. For example, Fig. 9 As shown, the battery box body 210 is fixedly connected to the first slider 123 and the second slider 133. And the battery box body 210 can be horizontally moved to the side of the self-organizing network box 110 away from the cooling fan 500 through the first slider 123 and the second slider 133. A vertical groove 220 is provided on the outer wall of the battery box body 210 close to the self-organizing network box 110, and the bottom of the vertical groove 220 is connected to a horizontal groove 230. The other end of the horizontal groove 230 extends to the side away from the cooling fan 500 and is an open structure. Buffer pads 240 are fixedly installed on the inner walls of the vertical groove 220 and the horizontal groove 230.
[0063] When the battery box body 210 is moved, the user can place both arms in the horizontal slots 230 and vertical slots 220 on both sides, which can not only further share the weight of the battery box 200 with both arms and reduce the load-bearing force on the back, but also avoid the battery box body 210 from abrading the skin of both arms, thereby improving the comfort of the user when carrying the battery box.
[0064] The first anti-collision unit 300 includes an anti-collision bag mounting plate 310, an anti-collision bag body 330, a plurality of groups of first soft glue sticks 340 and a plurality of groups of second soft glue sticks 350. Fig.10 As shown, a fixing buckle 320 is fixedly installed on a side wall of the anti-collision bag mounting plate 310 close to the self-organizing network box 110, and the anti-collision bag mounting plate 310 is movably connected to the outer wall of the self-organizing network box 110 through the fixing buckle 320. The anti-collision bag body 330 is fixedly installed on a side wall of the anti-collision bag mounting plate 310 away from the fixing buckle 320. Several groups of the first soft glue sticks 340 and several groups of the second soft glue sticks 350 are distributed in the anti-collision bag body 330 in a rectangular array, and the first soft glue sticks 340 and the second soft glue sticks 350 are vertically arranged. A vacuum ball 360 is fixedly installed at the junction of the first soft glue stick 340 and the second soft glue stick 350. A sealing plug 370 is fixedly installed on a side wall of the anti-collision bag mounting plate 310 away from the anti-collision bag body 330.
[0065] When the self-organizing network box 110 is hit by an external force, it will first contact the anti-collision bag body 330 and transfer the impact force to the corresponding group or groups of first soft glue sticks 340 and second soft glue sticks 350. Then, since the first soft glue sticks 340 and second soft glue sticks 350 are distributed in a rectangular array and arranged crosswise with each other, the group or groups of first soft glue sticks 340 and second soft glue sticks 350 that are hit by the impact force will immediately disperse the impact force to other groups of first soft glue sticks 340 and second soft glue sticks 350. At the same time, the impact force is further absorbed by each group of vacuum balls 360 located at the junction of the first soft glue stick 340 and the second soft glue stick 350, thereby improving the buffering force of the first anti-collision unit 300. In addition, the anti-collision bag mounting plate 310 is movably connected to the self-organizing network box 110 through a fixed buckle 320. When one group of the first anti-collision units 300 is damaged, it is only necessary to remove and replace the first anti-collision unit 300 alone.
[0066] The backpack unit 600 includes a backpack plate 610, a support plate 620, a first limiting sleeve 630 and a second limiting sleeve 650. Fig.11 and Fig.12As shown, the support plate 620 is fixedly mounted at the bottom edge of one side wall of the back plate 610, and a support plate limiting groove is provided on the support plate 620. The self-organizing network box 110 is located in the support plate limiting groove. The side wall of the back plate 610 away from the support plate 620 is a fan ring structure, and a bottom groove through hole 611 is provided at the bottom. Two groups of shoulder straps 660 are symmetrically installed on both sides of the bottom groove through hole 611, and a group of drawstrings 670 are installed on both groups of shoulder straps 660, and the other end of the drawstrings 670 can be movably mounted on the battery box body 210. A first limiting sleeve 630 is movably clamped at the edge of one side of the support plate 620 away from the back plate 610, and a load-reducing mechanism 640 is provided on the top of the first limiting sleeve 630, and the top of the load-reducing mechanism 640 is fixedly connected to the second limiting sleeve 650. The other end of the second limiting sleeve 650 is movably clamped on the back plate 610.
[0067] The load-reducing mechanism 640 includes a stretching ball 642 and two sets of anti-vibration plates 641. Fig.13 and Fig.14 As shown, the two groups of anti-seismic plates 641 are symmetrically installed on the opposite side walls of the first limiting sleeve 630 and the second limiting sleeve 650. And there is a gap between the two groups of anti-seismic plates 641, and the stretching ball 642 is located in the gap. The stretching ball 642 includes several groups of stretching ball outer plates 6421 with fan-shaped ring structures. Several groups of stretching ball outer plates 6421 can be combined to form a spherical structure, and there is a gap between two adjacent groups of 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 stretching ball outer plates 6421, and the other end of the stretching spring 6423 is fixedly mounted on the outer wall of the inner stretching ball 6422. Two groups of stretching belts 643 are fixedly mounted on each group of the stretching ball outer plates 6421 , and the two groups of stretching belts 643 are fixedly mounted on the two groups of anti-vibration plates 641 , respectively.
[0068] When the self-organizing network assembly 100 needs to be moved, the self-organizing network box 110 is first placed in the support plate limiting groove, and then the ends of the first limiting sleeve 630 and the second limiting sleeve 650 that are away from each other are respectively clamped on the support plate 620 and the back plate 610. The first limiting sleeve 630 and the second limiting sleeve 650 can realize the limiting function of the self-organizing network box 110. Then the shoulder strap 660 is carried on the person carrying it, and after the two battery box bodies 210 are unfolded, the two drawstrings 670 are respectively installed on the two battery box bodies 210. When the wearer walks, the bumpy force generated by the self-organizing network box 110 due to vibration will be transmitted to the first limit sleeve 630 and the second limit sleeve 650, and act on the stretching ball outer plate 6421, which will change the distance between each group of stretching ball outer plates 6421. Then, the bumpy force generated during walking is absorbed by a group of stretching springs 6423 in the direction corresponding to the bumpy force, so that the pulling caused by the bump will not directly act on the wearer. Then, the weight of the self-organizing network box 110 is dispersed to the two groups of battery box bodies 210 through two groups of drawstrings 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 wearer when carrying the device.
[0069] The present invention also provides a ranging infinite hop MESH communication system using the above-mentioned ad hoc network base station. For the specific working principle of the ranging infinite hop MESH communication system, please refer to the specific description in the above-mentioned embodiment of the ad hoc network base station.
[0070] The bumpy force generated by the self-organizing network box due to vibration of the carrying device for the self-organizing network base station and the ranging infinite hop MESH communication system of the present invention will be transmitted to the outer plate of the stretching ball, so that the distance between each group of the outer plates of the stretching ball will change, and then the bumpy force generated during walking will be absorbed by a group of stretching springs in the direction corresponding to the bumpy force, so that the pulling caused by the bump will not directly act on the bearer, and then the weight of the self-organizing network box will be dispersed to the two groups of battery box bodies through two groups of drawstrings, thereby further improving the overall balance of the device and increasing the stability of the self-organizing network box when moving, thereby improving the comfort of the bearer when carrying the device.
[0071] When the self-organizing network assembly needs to be carried and moved, the two battery boxes are first moved horizontally to the side close to the shoulder strap through the first sliding mechanism. When the user carries the self-organizing network assembly on the back, the weight of the two battery boxes will move from the user's back to the front to both sides. When the user carries the self-organizing network assembly and moves, the force on the back and both sides is more evenly distributed. The load-bearing force on the back is reduced, thereby reducing the risk of backward tilting, and also reducing the user's sense of weight when carrying it.
[0072] When the self-organizing network box is hit by external force, it will first contact the anti-collision bag body and transfer the impact force to one or more groups of first soft glue sticks and second soft glue sticks corresponding to it. Since the first soft glue sticks and the second soft glue sticks are arranged crosswise, the impact force will be immediately dispersed to other groups of first soft glue sticks and second soft glue sticks. And each group of vacuum balls is used to further absorb the impact force, thereby improving the buffering force of the first anti-collision unit. In addition, the anti-collision bag mounting plate is movably connected to the self-organizing network box through a fixed buckle. When one group of the first anti-collision units is damaged, it is only necessary to remove and replace the first anti-collision unit of this group separately.
[0073] When the user carries the ADAS, he can place his arms in the horizontal and vertical grooves on both sides, which can not only further share the weight of the battery box with his arms and reduce the load on the back, but also avoid the wear of the battery box body on the skin of the arms, thereby improving the comfort of the user when carrying it. In addition, the user's waist is just in the bottom groove of the fan-shaped ring structure, and the bottom groove protects the user's waist, reducing the waist fatigue caused by carrying the ADAS for a long time.
[0074] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein; and these modifications or substitutions do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A backpack unit, It is characterized in that It comprises a carrying plate (610), a supporting plate (620), a first limiting sleeve (630), a load-reducing mechanism (640), a second limiting sleeve (650), a shoulder strap (660) and a drawstring (670); A support plate (620) is installed at the bottom of one side wall of the backpack (610), and the support plate (620) is used to support the self-organizing network assembly (100). Two groups of shoulder straps (660) are installed on the other side wall of the backpack (610). A first limiting sleeve (630) is movably connected to the edge of the side of the support plate (620) away from the backpack (610). A second limiting sleeve (650) is provided on the top of the first limiting sleeve (630), and the other end of the second limiting sleeve (650) is movably connected to the backpack (610). A load-reducing mechanism (640) is provided between the first limiting sleeve (630) and the second limiting sleeve (650). A group of drawstrings (670) are installed on the shoulder straps (660), and the other end of the drawstrings (670) is used for movably mounting with the self-organizing network assembly (100); The load-reducing mechanism (640) comprises a stretching ball (642) and two groups of anti-vibration plates (641), wherein the two groups of anti-vibration plates (641) are symmetrically mounted on two opposite side walls of the first limiting sleeve (630) and the second limiting sleeve (650); the stretching ball (642) is located in the gap between the two groups of anti-vibration plates (641); The stretching ball (642) comprises a plurality of groups of stretching ball outer plates (6421) of fan-shaped structures, wherein the plurality of groups of the stretching ball outer plates (6421) can be combined to form a spherical structure, and a gap is provided between two adjacent groups of the stretching ball outer plates (6421); an inner stretching ball (6422) is provided in the spherical structure, and a group of stretching springs (6423) is provided 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 mounted on the outer wall of the inner stretching ball (6422).
2. The backpack unit according to claim 1, Features: The center point of the inner stretching ball (6422) coincides with the center point of the spherical structure.
3. The backpack unit according to claim 1, Features: Two groups of stretching belts (643) are installed on each group of the stretching ball outer plates (6421), and the two groups of stretching belts (643) are installed on two groups of earthquake-resistant plates (641) respectively.
4. The backpack unit according to claim 1, Features: The support plate (620) is provided with a support plate limiting groove, and the self-organizing network assembly (100) is located in the support plate limiting groove.
5. The backpack unit according to claim 1, Features: A side wall of the backpack plate (610) away from the support plate (620) is a fan-shaped ring structure, and a bottom groove through hole (611) is opened at the bottom, and the two groups of shoulder straps (660) are symmetrically arranged on both sides of the bottom groove through hole (611).
6. A self-organizing network base station, It is characterized in that The backpack unit according to any one of claims 1 to 5 further comprises a self-organizing network box (110), two sets of first sliding mechanisms (120), and a battery box (200); the two sets of the first sliding mechanisms (120) are symmetrically arranged on the two side walls of the self-organizing network box (110), and one set of the battery box (200) is respectively installed on the two sets of the first sliding mechanisms (120); The shoulder strap (660) is installed on a side wall of the self-organizing network box (110) that is perpendicular to the battery box (200); the battery box (200) can slide horizontally toward a side close to the shoulder strap (660) via a first sliding mechanism (120); and one end of the pull strap (670) is movably installed on the battery box (200).
7. The ad hoc network base station according to claim 6, Features: A group of first positioning bolts (190) are respectively provided at the edges of both sides of the top of the self-assembling network box (110), and the bottom of the first positioning bolt (190) can be movably mounted on the first sliding mechanism (120); a second positioning bolt (191) is provided on the side of the first positioning bolt (190) close to the shoulder strap (660), and the bottom of the second positioning bolt (191) can be movably mounted on the first sliding mechanism (120); The first sliding mechanism (120) includes a first sliding rod (122) and a first slider (123); a first sliding groove (121) is provided on a side wall of the self-organizing network box (110) which is perpendicular to the shoulder strap (660), and the first sliding rod (122) is installed in the first sliding groove (121); one end of the first slider (123) is slidably connected to the first sliding rod (122), and the other end of the first slider (123) passes through the outside of the first sliding groove (121) and is installed on the shell of the battery box (200); a bolt connection block (124) is fixedly installed on the top of the first slider (123); the bottoms of the first positioning bolt (190) and the second positioning bolt (191) can both pass through the first sliding groove (121) and be threadedly connected to the bolt connection block (124).
8. The ad hoc network base station according to claim 7, Features: A second sliding mechanism (130) is respectively provided directly below the two groups of the first sliding grooves (121), and the second sliding mechanism (130) comprises a second sliding rod (132) and a second sliding block (133); the second sliding groove (131) is located directly below the first sliding groove (121), and 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), and the other end of the second sliding block (133) passes through the outside of the second sliding groove (131) and is fixedly mounted on the shell of the battery box (200).
9. The ad hoc network base station according to claim 8, Features: The battery box (200) comprises a battery box body (210); the battery box body (210) is fixedly connected to a first slider (123) and a second slider (133); and the battery box body (210) can be horizontally moved toward a side of the self-organizing network box (110) close to the shoulder strap (660) via the first slider (123) and the second slider (133); A vertical groove (220) is provided on the outer wall of the battery box body (210) on one side close to the self-organizing network box body (110); the bottom of the vertical groove (220) is connected to a horizontal groove (230); the other end of the horizontal groove (230) extends to the side close to the shoulder strap (660) and is an open structure; and a cushioning pad (240) is fixedly installed on the inner walls of the vertical groove (220) and the horizontal groove (230).
Citation Information
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