CN203386339U - Wireless receiving equipment for overload and unbalanced load measurement - Google Patents

Wireless receiving equipment for overload and unbalanced load measurement Download PDF

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Publication number
CN203386339U
CN203386339U CN201320301237.4U CN201320301237U CN203386339U CN 203386339 U CN203386339 U CN 203386339U CN 201320301237 U CN201320301237 U CN 201320301237U CN 203386339 U CN203386339 U CN 203386339U
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China
Prior art keywords
controller
unbalance loading
measurement data
data
display module
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Expired - Fee Related
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CN201320301237.4U
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Chinese (zh)
Inventor
刘征
王征
朱强
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SHANGHAI INHOT ELECTRONIC TECHNOLOGY Co Ltd
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SHANGHAI INHOT ELECTRONIC TECHNOLOGY Co Ltd
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Priority to CN201320301237.4U priority Critical patent/CN203386339U/en
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Publication of CN203386339U publication Critical patent/CN203386339U/en
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Abstract

The utility model provides wireless receiving equipment for overload and unbalanced load measurement. The wireless receiving equipment comprises a controller, a wireless communication module and a display module, wherein the controller is respectively connected with the wireless communication module and the display module, the wireless communication module receives measurement data and sends the measurement data to the controller, and the measurement data comprise container gravity data, container gravity center data and overload and unbalanced load data analyzed by virtue of the container gravity and the container gravity center; the controller respectively sends the measurement data to the display module; the display module displays the measurement data. According to the wireless receiving equipment provided by the utility model, the measurement data sent by an overload and unbalanced load measurement and analysis device are received in a wifi wireless communication manner and are displayed on an LCD (Liquid Crystal Display) screen through the display module, so that the overload and unbalanced load measurement can be finished in the loading process of a lift container, and the wireless receiving equipment has the characteristics of convenience, quickness and low cost in the dynamic overload and unbalanced load measurement process of the container.

Description

Super unbalance loading is measured radio receiver
Technical field
The utility model relates to super unbalance loading fields of measurement, particularly, relates to super unbalance loading and measures radio receiver.
Background technology
In transportation by railroad, safety is the problem of the most important thing.As everyone knows, the super unbalance loading of vehicle is the important hidden danger of cargo security, wherein the particularly transportation of container.If there is no checkout equipment, can't judge whether super unbalance loading, the accident caused thus is difficult to its reason of judgement.
To the measurement of overloading and unbalanced loading of container, two kinds of methods of Static and dynamic are arranged.The static measurement device, when reality is used, need to be sling container to be placed on weighing unit, is hung in vehicle after measurement again or piles up.Although the precision that this method is measured is higher, need more artificial and place etc., increased the flow process of Container Loading, also just increased cost.Therefore be necessary to design and a kind ofly can in the loading process of container of slinging, complete quickly and easily measurement, and lower-cost overloading and unbalanced loading of container dynamic measurement system.
The utility model content
For defect of the prior art, the purpose of this utility model is to provide a kind of super unbalance loading and measures radio receiver.
According to an aspect of the present utility model, provide a kind of super unbalance loading to measure radio receiver, comprise controller, wireless communication module, display module, controller connects respectively wireless communication module, display module, wherein:
Wireless communication module receives measurement data and measurement data is sent to controller, and wherein, described measurement data comprises container gravimetric data, container center of gravity data, reaches the super inclined to one side overload data that analyze by container gravity and center of gravity; Controller sends to respectively display module by measurement data; Display module is shown measurement data.
Preferably, controller is the ARM9 Series Controller.
Preferably, controller adopts 32 ARM9 microcontroller AT91SAM9261.
Preferably, also comprise mixed-media network modules mixed-media, controller interconnection network module, and send measurement data to mixed-media network modules mixed-media, mixed-media network modules mixed-media sends the measurement data received to PC.
Preferably, wireless communication module is the wifi communication module.
Preferably, also comprise the alarm device, wherein, the alarm device connects controller.
Preferably, display module comprises the LED display device.
Compared with prior art, the super unbalance loading that the utility model provides is measured radio receiver and can be arranged in the container hoisting pulpit, receive by the wifi communication measurement data that super unbalance loading measurement analysis device sends over, wherein measurement data comprises container gravimetric data, container center of gravity data, reaches the super inclined to one side overload data that analyze by container gravity and center of gravity, then by display module by data in the LCD screen display out.Can in the loading process of container of slinging, complete the measurement for super unbalance loading after application the utility model, there are convenient, fast, lower-cost characteristics in the kinetic measurement process of overloading and unbalanced loading of container.
The accompanying drawing explanation
By reading the detailed description of non-limiting example being done with reference to the following drawings, it is more obvious that other features, objects and advantages of the present utility model will become:
The super unbalance loading that Fig. 1 illustrates application the utility model to be provided is measured the structural representation of the overloading and unbalanced loading of container detection system of radio receiver;
The structural representation that the super unbalance loading provided according to the utility model is measured radio receiver is provided Fig. 2.
In figure:
1 is pulling force sensor;
2 is super unbalance loading measurement analysis device;
3 is super unbalance loading measurement radio receiver;
31 is wireless communication module;
32 is controller;
33 is display module;
34 is mixed-media network modules mixed-media;
4 is PC;
5 is temperature sensor.
Embodiment
Below in conjunction with specific embodiment, the utility model is elaborated.Following examples will contribute to those skilled in the art further to understand the utility model, but not limit in any form the utility model.It should be pointed out that to those skilled in the art, without departing from the concept of the premise utility, can also make some distortion and improvement.These all belong to protection domain of the present utility model.
The super unbalance loading provided according to the utility model is measured radio receiver, comprises controller, wireless communication module, display module, mixed-media network modules mixed-media, alarm device, and controller connects respectively wireless communication module, display module.Particularly, wireless communication module receives measurement data and measurement data is sent to controller, and wherein, described measurement data comprises container gravimetric data, container center of gravity data; Controller calculates super inclined to one side overload data according to measurement data, and super inclined to one side overload data are sent to respectively to display module; Display module is shown super inclined to one side overload data; Controller interconnection network module, and send super inclined to one side overload data to mixed-media network modules mixed-media, the super inclined to one side overload data that mixed-media network modules mixed-media will receive send to PC; The alarm device connects controller; Wireless communication module is the wifi communication module; Display module comprises the LED display device.
More specifically, controller is the ARM9 Series Controller, and preferably, controller adopts 32 ARM9 microcontroller AT91SAM9261.AT91SAM9261 be atmel company produce take the complete SOC (system on a chip) (SOC) that ARM926EJ-S ARM Thumb processor is core, it has expanded DSP instruction set and Jazelle Java accelerator.During master clock frequency 190MHz, performance is up to 210MIPS.The peripheral hardware of AT91SAM9261 is complete, comprise the cycle intervalometer, watchdog timer, real-time timer, three 32 bit parallel I/O controllers, SD card and multimedia card (MMC) interface, three synchronous serial controllers, three universal synchronous/asynchronism transceivers (USART), the UART Universal Asynchronous Receiver Transmitter of a debugging use (UART), two master/slave Serial Peripheral Interface (SPI)s (SPI), 16 bit timing device/counters of 3 passages, two-wire interface (TWI) multiple field high-speed bus inside structure and special-purpose peripheral hardware DMA, SRAM and deterministic process formula TCM support scheme flexibly on large capacity sheet, built-in lcd controller, full speed USB master controller, 8 grades of other priority interrupt control units.
At application the utility model, provide in preferred embodiment of overloading and unbalanced loading of container detection system of super unbalance loading measurement radio receiver, as shown in Figure 1, the overloading and unbalanced loading of container detection system comprises pulling force sensor, temperature sensor, super unbalance loading measurement analysis device, super unbalance loading measurement radio receiver, lifting whirligig, PC.Particularly, the quantity of pulling force sensor is a plurality of, pulling force sensor, super unbalance loading measurement analysis device, super unbalance loading are measured radio receiver and are connected successively, super unbalance loading measurement analysis device comprises multichannel pulling force sensor interface, multichannel pulling force sensor interface connects respectively corresponding pulling force sensor, and super unbalance loading is measured radio receiver and comprised display.
Wherein, pulling force sensor is gathered and is sent to super unbalance loading measuring and analysis system to the Container Weight data, super unbalance loading measuring and analysis system calculates according to the Container Weight data pulling force, container total force, the super inclined to one side overload data that each pulling force sensor is subject to, and the pulling force that each pulling force sensor is subject to, container total force, super inclined to one side overload data send to super unbalance loading to measure radio receiver, pulling force, container total force, super inclined to one side overload data that super unbalance loading measurement radio receiver is subject to each pulling force sensor are shown by display.Super unbalance loading measurement analysis device connects temperature sensor, temperature sensor sends to super unbalance loading measurement analysis device by the current environmental temperature collected, and super unbalance loading measurement analysis device is removed the environmental error in pulling force that each pulling force sensor is subject to, container total force, super inclined to one side overload data according to current environmental temperature.PC connects super unbalance loading measurement analysis device and/or super unbalance loading is measured radio receiver, and PC is used for data demonstration, data backup, reaches report printing.
Pulling force sensor is arranged on the lifting whirligig, and super unbalance loading measurement analysis device is arranged at the lifting whirligig; Preferably, at four jiaos that lift by crane whirligig, be respectively arranged with pulling force sensor, the quantity of described pulling force sensor is 4, and these 4 pulling force sensors are according to the array distribution of two row two row, and super unbalance loading measurement analysis device is arranged at the middle part of lifting whirligig.Correspondingly, super unbalance loading measurement analysis device comprises controller and 4 road pulling force sensor interfaces, the external 4 road pulling force sensors of this 4 road pulling force sensor interface, controller mainly is responsible for configuration and the control of whole overloading and unbalanced loading of container detection system, if super inclined to one side overload is arranged do to report to the police and process.
Further, super unbalance loading measurement analysis device comprises wireless communication module, and super unbalance loading measurement analysis device is measured radio receiver by wireless communication module and super unbalance loading and is connected.Wireless communication module is preferably the wifi communication module.Super unbalance loading is measured radio receiver and is received the data that super unbalance loading measurement analysis device sends over and be shown on LCD by the wifi wireless network, and can data be sent to PC so that generating report forms by network, PC can show data after receiving data, and printable form.
Further, the gravimetric data of 4 road pulling force sensors collection containers on the container hoisting device sends the super unbalance loading measurement analysis device of super unbalance loading measuring system to.Super unbalance loading measurement analysis device is gone Error processing to 4 road pulling force sensor data, and calculate the pulling force that each pulling force sensor is subject to, and whether analyze super unbalance loading according to special algorithm, and by wifi, send to super unbalance loading to measure radio receiver data.Super unbalance loading is measured radio receiver and is received the data that super unbalance loading measurement analysis device sends over and be shown to LCD and go up, and forwards the data to the PC end so that generating report forms by network interface.
Above specific embodiment of the utility model is described.It will be appreciated that, the utility model is not limited to above-mentioned specific implementations, and those skilled in the art can make various distortion or modification within the scope of the claims, and this does not affect flesh and blood of the present utility model.

Claims (7)

1. a super unbalance loading is measured radio receiver, it is characterized in that, comprise controller, wireless communication module, display module, controller connects respectively wireless communication module, display module, wherein:
Wireless communication module receives measurement data and measurement data is sent to controller; Controller sends to respectively display module by measurement data; Display module is shown measurement data.
2. super unbalance loading according to claim 1 is measured radio receiver, it is characterized in that, controller is the ARM9 Series Controller.
3. super unbalance loading according to claim 2 is measured radio receiver, it is characterized in that, controller adopts 32 ARM9 microcontroller AT91SAM9261.
4. super unbalance loading according to claim 1 is measured radio receiver, it is characterized in that, also comprises mixed-media network modules mixed-media, controller interconnection network module, and send measurement data to mixed-media network modules mixed-media, mixed-media network modules mixed-media sends the measurement data received to PC.
5. super unbalance loading according to claim 1 is measured radio receiver, it is characterized in that, wireless communication module is the wifi communication module.
6. super unbalance loading according to claim 1 is measured radio receiver, it is characterized in that, also comprises the alarm device, and wherein, the alarm device connects controller.
7. super unbalance loading according to claim 1 is measured radio receiver, it is characterized in that, display module comprises the LED display device.
CN201320301237.4U 2013-05-28 2013-05-28 Wireless receiving equipment for overload and unbalanced load measurement Expired - Fee Related CN203386339U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320301237.4U CN203386339U (en) 2013-05-28 2013-05-28 Wireless receiving equipment for overload and unbalanced load measurement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320301237.4U CN203386339U (en) 2013-05-28 2013-05-28 Wireless receiving equipment for overload and unbalanced load measurement

Publications (1)

Publication Number Publication Date
CN203386339U true CN203386339U (en) 2014-01-08

Family

ID=49874799

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320301237.4U Expired - Fee Related CN203386339U (en) 2013-05-28 2013-05-28 Wireless receiving equipment for overload and unbalanced load measurement

Country Status (1)

Country Link
CN (1) CN203386339U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
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: 20140108

Termination date: 20170528