CN205899803U - A on -vehicle system of unmanned aerial vehicle for administer overload transfinites - Google Patents

A on -vehicle system of unmanned aerial vehicle for administer overload transfinites Download PDF

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Publication number
CN205899803U
CN205899803U CN201620859388.5U CN201620859388U CN205899803U CN 205899803 U CN205899803 U CN 205899803U CN 201620859388 U CN201620859388 U CN 201620859388U CN 205899803 U CN205899803 U CN 205899803U
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China
Prior art keywords
platform
microprocessor
module
weighing platform
unmanned plane
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Expired - Fee Related
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CN201620859388.5U
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Chinese (zh)
Inventor
周济华
吴镝
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Anhui Yulong Information Technology Co Ltd
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Anhui Yulong Information Technology Co Ltd
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Abstract

The utility model relates to an on -vehicle system of unmanned aerial vehicle, concretely relates to an on -vehicle system of unmanned aerial vehicle for administer overload transfinites, including microprocessor, the data acquisition unit that is used for gathering vehicle load information and contour dimension that links to each other with microprocessor is with the continuous execution unit who is used for carrying out microprocessor send instruction of microprocessor to and the RFID card reader and the database that link to each other with microprocessor, the data acquisition unit includes the wireless communication module who links to each other with microprocessor, and a wireless communication module and a weighing sensor, the 2nd weighing sensor, character recognition module and data processing module link to each other, and character recognition module and data processing module link to each other with the microprocessor 0 module, and the microprocessor 0 module links to each other with the camera, the utility model provides a technical scheme can overcome effectively that prior art exists breeies the corrupt practice easily, the intelligent automation degree is lower, the detection progress is slow and testing result defect such as accuracy inadequately.

Description

A kind of unmanned plane onboard system transfiniting for overload control
Technical field
This utility model is related to unmanned plane onboard system and in particular to a kind of unmanned plane transfiniting for overload control is vehicle-mounted System.
Background technology
Vehicle is means of transport main at present, and increasing with vehicle, vehicle accident also occurs again and again, these friendships Vehicle major part in interpreter's event is passenger vehicle and lorry.Through the post survey of traffic department, there is the former of vehicle accident Because of major part because these overload of vehicle cause.Overload mainly has following harm: heavy damage highway facilities, increases Highway maintenance expense, shortens highway service life;Easily cause road traffic accident, because overload and oversize transportation makes vehicle long Phase is in overload state, and the security performances such as braking and the operation of vehicle can be led to decline rapidly;Overload transport makes freight rate low Fan, disturbs the sound development of carrier, causes national set-fee to run off in a large number simultaneously, have impact on raising of highway construction fund Arrange.
China yet suffers from some difficult points in terms of administering automobile overload at present: overload detection anthropic factor is larger, easily Grow corrupt practice;Overload testing process compared with slow and automaticity is relatively low, the judgement of overload need to stop after in overload scale On complete;Due to relying primarily on artificial control testing process, lead to detection progress slower, the situation of traffic jam happens occasionally.
Currently there are some to judge the equipment of overload of vehicle by detecting axletree, but still cannot preferably solve above-mentioned asking Topic.Reason be some automobile manufacturing enterprises in order to expand market access, cater to the psychology that car purchaser underpays traffic fee and insurance premium, Ignore the ability to bear of highway, arbitrarily produce the heavy goods vehicles of the little axletree of large-tonnage, by forging model and technical data, fall tonnage Sales promotion, arbitrarily provide the means such as work certificate to same vehicle, wrongful economic interests are sought with this.
Utility model content
(1) technical problem solving
For the disadvantages mentioned above existing for prior art, this utility model provides a kind of nothing transfiniting for overload control Man-machine onboard system, can effectively overcome and easily grow corrupt practice, automation and intelligentification degree relatively existing for prior art The defect such as low, detection progress is not accurate enough compared with slow and testing result.
(2) technical scheme
For realizing object above, this utility model is achieved by the following technical programs:
A kind of unmanned plane onboard system transfiniting for overload control, including microprocessor, is connected with described microprocessor The data acquisition unit for collection vehicle weight information and contour dimension, be connected with described microprocessor is micro- for executing The performance element of the sent instruction of processor, and the rfid card reader database being connected with described microprocessor;Described number Include wireless communication module, described wireless communication module and the first weighing and sensing being connected with described microprocessor according to collecting unit Device, the second LOAD CELLS, character recognition module data processing module are connected, and described character recognition module data processes mould Block is connected with image zooming-out module, and described image extraction module is connected with photographic head;Described performance element includes and described micro- place Electric rotation shaft, display screen, alarm and memorizer that reason device is connected;
Described first LOAD CELLS, the second LOAD CELLS be respectively arranged on the first weighing platform, in the second weighing platform, Described first weighing platform is connected by transition platform with the second weighing platform, described first weighing platform and the second weighing platform The other end be equipped with slope, be equipped with reinforcement in described first weighing platform, the second weighing platform and transition platform, described It is equipped with fix bar, described fix bar passes through electric rotation shaft and gear on first weighing platform, the second weighing platform and transition platform Bar is connected, and is provided with display screen, described second weighing platform is additionally provided with alarm by described second weighing platform, and described transition is put down Platform is connected with platform truck by charging pile, and described platform truck is provided with hoistable platform, and described hoistable platform is provided with unmanned plane, institute State in the first weighing platform, the second weighing platform and unmanned plane and be equipped with wireless communication module, described unmanned plane is additionally provided with and takes the photograph As head, image zooming-out module, character recognition module data processing module.
Preferably, described wireless communication module is zigbee module.
Preferably, described first LOAD CELLS and the second LOAD CELLS are fluid pressure type LOAD CELLS.
Preferably, described display screen is led display screen.
Preferably, described alarm is phonetic alarm.
(3) beneficial effect
Compared with prior art, a kind of unmanned plane onboard system transfiniting for overload control provided by the utility model Using pin, vehicle to be measured is limited on weighing platform, and unmanned plane can be manipulated, entered using the photographic head on unmanned plane Row image zooming-out, gathers weight information and the contour dimension of vehicle to be measured, can effectively prevent from rushing blocking and run away and corrupt practice Occur;Load-carrying detection is carried out using the method that double measurement is averaged, detection accuracy can be effectively improved;Using microprocessor Device controls, and automation and intelligentification degree is higher, and can directly recall the relevant information of vehicle to be measured from data base and carry out Compare, detection progress is very fast, it can be avoided that the traffic jam leading to because detection progress is slow.
Brief description
In order to be illustrated more clearly that this utility model embodiment or technical scheme of the prior art, below will be to embodiment Or the accompanying drawing of required use is briefly described in description of the prior art.It should be evident that drawings in the following description are only It is some embodiments of the present utility model, for those of ordinary skill in the art, in the premise not paying creative work Under, other accompanying drawings can also be obtained according to these accompanying drawings.
Fig. 1 is this utility model system schematic;
Fig. 2 is this utility model structural representation;
In figure:
1st, microprocessor;2nd, the first LOAD CELLS;3rd, the second LOAD CELLS;4th, photographic head;5th, wireless communication module; 6th, image zooming-out module;7th, rfid card reader;8th, electric rotation shaft;9th, display screen;10th, alarm;11st, memorizer;12nd, the first title Galassing platform;13rd, the second weighing platform;14th, transition platform;15th, slope;16th, reinforcement;17th, fix bar;18th, pin;19th, fill Electric stake;20th, platform truck;21st, hoistable platform;22nd, unmanned plane;23rd, character recognition module;24th, data processing module;25th, data Storehouse.
Specific embodiment
Purpose, technical scheme and advantage for making this utility model embodiment are clearer, new below in conjunction with this practicality Accompanying drawing in type embodiment, is clearly and completely described to the technical scheme in this utility model embodiment.Obviously, retouched The embodiment stated is a part of embodiment of this utility model, rather than whole embodiments.Based on the enforcement in this utility model Example, the every other embodiment that those of ordinary skill in the art are obtained under the premise of not making creative work, broadly fall into The scope of this utility model protection.
A kind of unmanned plane onboard system transfiniting for overload control, as shown in Figure 1 and Figure 2, including microprocessor 1, and micro- The data acquisition unit for collection vehicle weight information and contour dimension that processor 1 is connected, the use being connected with microprocessor 1 Sent the performance element of instruction in execution microprocessor 1, and rfid card reader 7 database being connected with microprocessor 1 25;Data acquisition unit includes the wireless communication module 5 being connected with microprocessor 1, wireless communication module 5 and the first weighing and sensing Device 2, the second LOAD CELLS 3, character recognition module 23 data processing module 24 are connected, at character recognition module 23 data Reason module 24 is connected with image zooming-out module 6, and image zooming-out module 6 is connected with photographic head 4;Performance element includes and microprocessor 1 electric rotation shaft 8 being connected, display screen 9, alarm 10 and memorizer 11;
First LOAD CELLS 2, the second LOAD CELLS 3 are respectively arranged on the first weighing platform 12, the second weighing platform 13 Interior, the first weighing platform 12 is connected by transition platform 14 with the second weighing platform 13, and the first weighing platform 12 and second is weighed The other end of platform 13 is equipped with slope 15, is equipped with the first weighing platform 12, the second weighing platform 13 and transition platform 14 Reinforcement 16, the first weighing platform 12, the second weighing platform 13 and transition platform 14 are equipped with fix bar 17, and fix bar 17 is led to Cross electric rotation shaft 8 to be connected with pin 18, be provided with display screen 9 by the second weighing platform 13, the second weighing platform 13 is additionally provided with report Alert device 10, transition platform 14 is connected with platform truck 20 by charging pile 19, and platform truck 20 is provided with hoistable platform 21, hoistable platform 21 are provided with unmanned plane 22, are equipped with wireless communication module in the first weighing platform 12, the second weighing platform 13 and unmanned plane 22 5, unmanned plane 22 is additionally provided with photographic head 4, image zooming-out module 6, character recognition module 23 data processing module 24.
Wireless communication module 5 is zigbee module, and the first LOAD CELLS 2 and the second LOAD CELLS 3 are fluid pressure type LOAD CELLS, display screen 9 is led display screen, and alarm 10 is phonetic alarm.
When needing using this system, testing staff needs to swipe the card in rfid card reader 7 could use by authentication. During detection, microprocessor 1 pass through electric rotation shaft 8 control be located at the first weighing platform 12 on pin 18 rise, vehicle to be measured from Slope 15 enters the first weighing platform 12, and after entrance, pin 18 falls.First LOAD CELLS 2 is treated measuring car and is weighed, And weight information is sent to by microprocessor 1 by wireless communication module 5;Meanwhile, testing staff can manipulate unmanned plane 22, profit Shoot video information with the photographic head 4 on unmanned plane 22.
Image zooming-out module 6 can extract the image information of vehicle to be measured, character recognition module 23 energy from video information Enough identify license plate number, data processing module 24 can calculate the contour dimension of vehicle to be measured, and will by wireless communication module 5 Above- mentioned information is sent to microprocessor 1, and microprocessor 1 can recall the correlation of vehicle to be measured from data base 25 according to license plate number Information.When unmanned plane 22 electricity exhausts, testing staff can manipulate unmanned plane 22 and drop on hoistable platform 21, using charging Stake 19 is charged to unmanned plane 22.
Microprocessor 1 controls the pin 18 being located on transition platform 14 to rise, and vehicle to be measured is laggard through transition platform 14 Enter the second weighing platform 13, after entrance, pin 18 falls, the second LOAD CELLS 3 passes through wireless communication module 5 by weight information It is sent to microprocessor 1.Microprocessor 1 is averaged to weight information twice, together with contour dimension and the relevant information recalling Compare, and testing result is shown on display screen 9.If overload of vehicle to be measured, microprocessor 1 will control alarm 10 send alarm, will not rise the pin 18 on the second weighing platform 13 such that it is able to limit overloaded vehicle simultaneously So that overloaded vehicle cannot rush card runs away on the second weighing platform 13, wait pending.
After previous vehicle to be measured enters on the second weighing platform 13, vehicle to be measured afterwards just can enter first weigh flat On platform 12, to accelerate detection progress.Microprocessor 1 is weighed by being pointed to the first weighing platform 12, transition platform 14 and second Pin 18 on platform 13 carries out elevating control to realize this function.
Reinforcement 16 can make load-bearing pound bear larger weight, it is to avoid leads to inside load-bearing pound because vehicle to be measured is overweight Structural failure.
A kind of unmanned plane onboard system transfiniting for overload control provided by the utility model will be to be measured using pin Vehicle is limited on weighing platform, and can manipulate unmanned plane, carries out image zooming-out using the photographic head on unmanned plane, collection The weight information of vehicle to be measured and contour dimension, can effectively prevent from rushing the generation that card is run away with corrupt practice;Using secondary survey The method measuring meansigma methodss carries out load-carrying detection, can effectively improve detection accuracy;Using microprocessor control, automatization's intelligence Can change that degree is higher, and can directly recall the relevant information of vehicle to be measured from data base and compare, detection progress is relatively Hurry up, it can be avoided that the traffic jam leading to because detection progress is slow.
Above example only in order to the technical solution of the utility model to be described, is not intended to limit;Although with reference to aforementioned reality Apply example this utility model has been described in detail, it will be understood by those within the art that: it still can be to front State the technical scheme described in each embodiment to modify, or equivalent is carried out to wherein some technical characteristics;And these Modification or replace, can't make appropriate technical solution essence depart from this utility model each embodiment technical scheme spirit and Scope.

Claims (5)

1. a kind of unmanned plane onboard system transfiniting for overload control it is characterised in that: include microprocessor (1), and described The data acquisition unit for collection vehicle weight information and contour dimension that microprocessor (1) is connected, with described microprocessor (1) performance element being sent instruction for executing microprocessor (1) being connected, and be connected with described microprocessor (1) Rfid card reader (7) database (25);Described data acquisition unit includes the radio communication being connected with described microprocessor (1) Module (5), described wireless communication module (5) and the first LOAD CELLS (2), the second LOAD CELLS (3), character recognition module (23) data processing module (24) is connected, described character recognition module (23) data processing module (24) and image zooming-out mould Block (6) is connected, and described image extraction module (6) is connected with photographic head (4);Described performance element includes and described microprocessor (1) electric rotation shaft (8), display screen (9), alarm (10) and the memorizer (11) being connected;
Described first LOAD CELLS (2), the second LOAD CELLS (3) are respectively arranged on the first weighing platform (12), second weigh In platform (13), described first weighing platform (12) is connected by transition platform (14) with the second weighing platform (13), and described the The other end of one weighing platform (12) and the second weighing platform (13) is equipped with slope (15), described first weighing platform (12), It is equipped with reinforcement (16), described first weighing platform (12), the second title in second weighing platform (13) and transition platform (14) Fix bar (17) is equipped with galassing platform (13) and transition platform (14), described fix bar (17) passes through electric rotation shaft (8) and gear Bar (18) is connected, and is provided with display screen (9), described second weighing platform (13) is additionally provided with report by described second weighing platform (13) Alert device (10), described transition platform (14) is connected with platform truck (20) by charging pile (19), and described platform truck (20) is provided with Hoistable platform (21), described hoistable platform (21) is provided with unmanned plane (22), described first weighing platform (12), second weigh flat It is equipped with wireless communication module (5) in platform (13) and unmanned plane (22), described unmanned plane (22) is additionally provided with photographic head (4), figure As extraction module (6), character recognition module (23) data processing module (24).
2. the unmanned plane onboard system transfiniting for overload control according to claim 1 it is characterised in that: described wireless Communication module (5) is zigbee module.
3. the unmanned plane onboard system transfiniting for overload control according to claim 1 it is characterised in that: described first LOAD CELLS (2) and the second LOAD CELLS (3) are fluid pressure type LOAD CELLS.
4. the unmanned plane onboard system transfiniting for overload control according to claim 1 it is characterised in that: described display Screen (9) is led display screen.
5. the unmanned plane onboard system transfiniting for overload control according to claim 1 it is characterised in that: described warning Device (10) is phonetic alarm.
CN201620859388.5U 2016-08-09 2016-08-09 A on -vehicle system of unmanned aerial vehicle for administer overload transfinites Expired - Fee Related CN205899803U (en)

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CN201620859388.5U CN205899803U (en) 2016-08-09 2016-08-09 A on -vehicle system of unmanned aerial vehicle for administer overload transfinites

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108871524A (en) * 2018-04-27 2018-11-23 长沙硕铠电子科技有限公司 A method of prevent overload of vehicle from transfiniting
CN109509353A (en) * 2018-12-19 2019-03-22 天津普泰国信科技有限公司 Mobile monitoring unit based on intelligent road and intelligent road system
CN112216109A (en) * 2020-10-12 2021-01-12 无锡臻永科技有限公司 Information analysis platform and method adopting database storage

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108871524A (en) * 2018-04-27 2018-11-23 长沙硕铠电子科技有限公司 A method of prevent overload of vehicle from transfiniting
CN109509353A (en) * 2018-12-19 2019-03-22 天津普泰国信科技有限公司 Mobile monitoring unit based on intelligent road and intelligent road system
CN112216109A (en) * 2020-10-12 2021-01-12 无锡臻永科技有限公司 Information analysis platform and method adopting database storage

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170118

Termination date: 20180809