CN212782050U - Running test system - Google Patents

Running test system Download PDF

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CN212782050U
CN212782050U CN202021529873.9U CN202021529873U CN212782050U CN 212782050 U CN212782050 U CN 212782050U CN 202021529873 U CN202021529873 U CN 202021529873U CN 212782050 U CN212782050 U CN 212782050U
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host
test system
running test
running
module
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行鸿彦
庄玲
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Nanjing University of Information Science and Technology
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Nanjing University of Information Science and Technology
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Abstract

The utility model discloses when the test system that runs used, user's accessible ID card, campus card etc. carry the electronic card or the electronic equipment of identity information and sign in through the card reader on the host computer, later wear electronic identity label and get into the runway, through the extension to this electronic identity label timing/meter circle, the host computer of rethread shows or feeds back to upper computer system. The utility model discloses the test system that runs uses the mode nimble, is applicable to multiple test items of running, and the architectural design has good system expansibility, can respectively set up an extension to every runway of user unit, avoids the user must concentrate on a certain region, causes the sensor to sense the condition that too much signal appears lou examining at the same time, simultaneously the utility model discloses the usable satellite positioning system of test system that runs fixes a position electronic identity label, can be in the long-distance running project, and monitoring user's route of running is whether reasonable, avoids copying the circumstances such as way and takes place, also can prevent in daily use that the user from taking by mistake or losing.

Description

Running test system
Technical Field
The utility model relates to a technical field such as electron, communication and automatic control specifically are a test system runs.
Background
In the current school fitness test, middle and long distance running and short distance running are necessary items, the traditional timing is generally carried out manually, and the running time and the number of turns of each athlete are difficult to accurately record, so that a simple, accurate and efficient timing system is needed. With the development of science and technology, devices such as infrared timing devices and radio frequency timing devices have appeared. However, infrared timing devices are unable to determine the ranking order of players past the finish line and are unable to record the performance of each player when multiple players are passing the finish line simultaneously. Radio frequency transmission can identify a plurality of athletes at any time, but has certain distance limitation, and a plurality of terminals are triggered simultaneously, so that the condition of reading omission sometimes occurs. And existing running timing devices are designed for a single race track only.
SUMMERY OF THE UTILITY MODEL
A technical object of the present invention is to provide a novel running test system, which is applicable to both sprinting and long-distance running, and has good system expandability based on the situation of multiple runway places or multiple numbers of people, so as to improve the deficiencies of the prior art.
The technical scheme of the utility model is that:
a running test system is characterized by comprising a host, at least one extension, a loudspeaker and a plurality of electronic identity labels;
the host is used as a system main control node and is connected with an upper computer system through a wireless communication module to carry out information interaction, the host comprises a main singlechip, and a display, a voice module, a card reader and a satellite positioning system receiving module which are respectively connected with the main singlechip, and the card reader is matched with an electronic card or electronic equipment carrying user identity information for use and used for a tester to sign in;
the extension set is arranged beside the runway as a sub-node, is in communication connection with the host through a wireless communication module, and is provided with a sub-single chip microcomputer and a sensor connected with the sub-single chip microcomputer, wherein the sensor is used for sensing a signal emitted by the electronic identity tag and feeding back the sensed signal to the sub-single chip microcomputer, and the sub-single chip microcomputer processes the signal, performs timing/circle counting aiming at the electronic identity tag and feeds back the processed information to the host;
the loudspeaker is connected with the host and is used for playing the start running countdown prompt voice;
the electronic identity tag is internally provided with a positioning module for transmitting position information, and the position information is fed back to the host through a satellite positioning system.
On the basis of the above scheme, a further improved or preferred scheme further comprises:
furthermore, when a plurality of extension sets are provided, each extension set is connected with the host through the loRa wireless communication module, and the host is connected with the upper computer system through the mobile wireless communication module.
Preferably, the mobile wireless communication module is a 4G wireless communication module USR-LTE-7S.
Preferably, the sensor is an EVS-based MIMO antenna array.
Preferably, the satellite positioning system receiving module of the host adopts a GPS/Beidou positioning module S1218-BD.
Preferably, the positioning module built in the electronic identity tag is an OTrack-128 multi-mode multi-frequency chip.
Preferably, the voice module adopts a WT588D voice chip.
Preferably, the card reader is an RFID card reader.
Preferably, the main singlechip is an STM32F429IGT6 singlechip, and the sub singlechip is an STM32F103 singlechip.
Has the advantages that:
the utility model discloses when the test system that runs used, user's accessible ID card, campus card etc. carry the electronic card or the electronic equipment of identity information and sign in through the card reader on the host computer, later wear electronic identity label and get into the runway, through the extension to this electronic identity label timing/meter circle, the host computer of rethread shows or feeds back to upper computer system. The utility model discloses the test system that runs uses the mode nimble, is applicable to multiple test items of running, and the architectural design has good system expansibility, can respectively set up an extension to every runway of user unit, avoids the user must concentrate on a certain region, causes the sensor to sense the condition that too much signal appears lou examining at the same time, simultaneously the utility model discloses the usable satellite positioning system of test system that runs fixes a position electronic identity label, can be in the long-distance running project, and monitoring user's route of running is whether reasonable, avoids copying the circumstances such as way and takes place, also can prevent in daily use that the user from taking by mistake or losing.
Drawings
FIG. 1 is an architecture diagram of a running test system according to an embodiment of the present invention;
FIG. 2 is a schematic view of the installation of the main frame and the extension of the running test system;
fig. 3 is a block diagram of an embodiment of an electronic identity tag.
Detailed Description
In order to clarify the technical solution and the working principle of the present invention, the present invention will be further described with reference to the accompanying drawings and specific embodiments.
Example 1:
this embodiment uses traditional 400m annular runway in the campus as an example, introduces the utility model discloses running test system's structural component and theory of operation.
Fig. 1 shows a running test system, which includes a host, an extension, a speaker, and a plurality of electronic identity tags.
The host serves as a system main control node and is connected with an upper computer system (PC) through a mobile wireless communication module. The running test system is used as one of the devices of the track and field playground, the upper computer system can be a campus educational administration file management server or a console of the track and field playground, test data sent by the host computer are received, and meanwhile, the console can call a large screen beside a track sheet according to data fed back by the host computer so as to display information such as user names and running scores. The mobile wireless communication module preferably adopts a 4G wireless communication module USR-LTE-7S.
The host is provided with a main singlechip, a touch screen display, a voice module, an RFID card reader, a satellite positioning system receiving module and other components. The display, the voice module, the RFID card reader and the satellite positioning system receiving module are respectively connected with the main singlechip. Preferably, the main singlechip can adopt an STM32F429IGT6 chip, the satellite positioning system receiving module can adopt a GPS/Beidou positioning module S1218-BD, and the voice module can adopt a WT588D voice chip.
The RFID card reader can be matched with a campus card or an identity card loaded with user identity information for use, and is used for reading the user identity information, namely, a user signs in through a host to receive the electronic identity tag.
The extension is arranged beside the runway endpoint as a sub-node and is in communication connection with a host (a main singlechip) through a wireless communication module. The extension set is provided with a sub single chip microcomputer and a sensor connected with the sub single chip microcomputer, the sensor is used for sensing a signal emitted by the electronic identity tag and feeding the sensed signal back to the sub single chip microcomputer, and the sub single chip microcomputer processes the signal, performs timing/circle counting aiming at the electronic identity tag and feeds processing information back to the host. The timing/lap counting of the sub-single chip microcomputer can be completed through the logic operation module and the timing module, and under the condition that a plurality of testers exist, an external timer and a lap counter can be connected.
As shown in fig. 3, the electronic identity tag comprises a shell provided with a threading hole, and can be stringed by a hanging rope when being worn, so that the electronic identity tag is convenient for a user to wear. The electronic identity tag is internally provided with a positioning module for transmitting position information, and the position information is fed back to the host through a satellite positioning system. The positioning module can adopt an OTrack-128 multi-mode multi-frequency chip, the OTrack-128 multi-mode multi-frequency chip is a new generation Beidou satellite navigation chip released by alligator, the chip adopts a 32-bit high-performance ARM embedded processor, a baseband module with a built-in BDS/GPS/GLONASS/Galileo algorithm engine, an integrated DMA controller, USB1.1 equipment and other related IO peripheral equipment, and the chip is small in size (12 mmx12mmx1.25mm), advanced in process, flexible in packaging, capable of supporting ceramic packaging and plastic packaging, strong in anti-interference capacity and capable of eliminating 12 narrow-band interferences at most.
The sensor preferably adopts an MIMO antenna array based on EVS (electromagnetic vector sensor), the antenna array system can achieve accurate three-dimensional space unambiguous positioning of the arriving wave signal, the amplitude of the fading coefficient is low, the channel capacity is sufficient, and the EVS array has the characteristic of relieving the multipath channel correlation.
The loudspeaker can be arranged independently, and can also be connected with the audio output interface of the host by utilizing the existing playground loudspeaker of each track and field playground.
The workflow of the running test system of the embodiment includes:
1. the tester queues up and swipes the card, the host computer reads the information of the tested person such as name, sex, school number, etc., finishes signing in, and gives the number of the electronic identity label through the display screen, the tester receives the corresponding label and wears it;
2. the last tester or other auxiliary personnel actively press a test start key on the host operation interface according to the selected test item, the main single chip microcomputer starts countdown, the voice module is called in the last few seconds, and the prompt voice of starting running countdown is played through the loudspeaker; or the host automatically performs countdown broadcasting according to the starting time point of a preset test item, and a tester receives the electronic identity tag and then goes to an appointed place to wait for a prompt tone;
3. when the sensor at the end point detects the signal of the electronic identity tag, the sub-single chip microcomputer is combined with the time of starting the running test, and the electronic identity tags detected by the sub-single chip microcomputer are respectively timed, if necessary, the turn is counted at the same time (for example, eight hundred meters of items, a user can pass through the end point for multiple times);
4. after all testers complete the test, the testers press a stop key on the host operation interface, or after sufficient waiting time, the host automatically displays the test result data through a display or is connected with a control console, the test result data are displayed by a large screen beside a runway, and meanwhile, the test result data can be transmitted to a campus educational administration file management server for statistics and storage.
Example 2:
since there may be multiple track and field playgrounds in a campus, this embodiment takes a school with multiple runways as an example, and introduces the structural composition and working principle of the running test system.
The embodiment is based on embodiment 1, and is different from embodiment 1 in that the running test system of the embodiment is provided with a plurality of extension sets and a plurality of speakers, each extension set corresponds to one runway, and each runway is provided with one speaker.
In this embodiment, the host is connected to the upper computer system through the 4G wireless communication module, and each extension is connected to the host through the loRa wireless communication module, that is, the loRa networking is selected to connect the child nodes and the master control node to form a local area network, instead of each node adopting 4G communication. In order to ensure the accuracy of system data transmission, the communication interface of each node singlechip can adopt a self-defined frame format and CRC (cyclic redundancy check).
The workflow of the running test system of the embodiment includes:
1. the tester queues up and swipes the card, the host computer reads the information of the tested person such as name, sex, school number, etc., finishes signing in, and gives the number of electronic identity label and runway through the display screen, the tester picks up the corresponding label and wears it, then enters the corresponding track and field runway;
2. the last tester or other auxiliary personnel actively press a test start key on the host operation interface according to the selected test item, the main single chip microcomputer starts countdown, the voice module is called in the last few seconds, and the prompt voice of starting running countdown is played through the loudspeaker; or the host automatically performs countdown broadcasting according to the preset test item starting time, and a tester receives the electronic identity tag and then goes to a specified place to wait for a prompt tone;
3. when the sensor detects the signal of the electronic identity label, the sub-single chip microcomputer respectively counts the time of the detected electronic identity label by combining the time of starting the running test, and counts the turn if necessary;
4. after all testers complete the test, the personnel press a stop key on the host operation interface, or after sufficient waiting time, the host automatically displays the test result data through a display or connects with a control console, displays the test result data through a large screen beside a runway, and simultaneously transmits the test result data to a campus educational administration file management server for statistics and storage.
When the runways are tested simultaneously, the extension information can be simultaneously sent to the host computer through networking, and the host computer can quickly verify the data returned by which runway by combining the position information of the electronic identity tags, so that the data accuracy is ensured.
Example 3:
the present embodiment takes the marathon running test project as an example to describe the structural composition and the working principle of the running test system.
The hardware structure of the running test system of this embodiment is the same as that of embodiment 1, and the work flow thereof substantially includes:
1. the tester queues up and swipes the card, the host reads the information of the tested person such as name, sex, ID card, etc., finishes signing in, and gives the number of the electronic identity label through the display screen, the tester receives the corresponding label and wears it;
2. the host plays a start running countdown prompting voice through a loudspeaker according to a preset test starting time when the time is about to come, and prompts a tester to start preparation;
3. after the tester starts running, the host monitors whether the tester runs according to a specified route according to the position information returned by the satellite positioning system, and when the sensor at the end point detects a signal of the electronic identity tag, the sub-single chip microcomputer calculates the running time of the electronic identity tag detected by the sub-single chip microcomputer according to the running test starting time;
4. after all testers complete the test, the personnel press a stop key on the host operation interface, or after sufficient waiting time, the host automatically displays the test result data through a display, or uploads the test result data to an upper computer system for statistics and storage.
According to the above descriptions of the embodiments, after the tester checks in, the extension can detect the time of the running end, and the running start time can be set according to the program of the host, and there are various operation modes, such as presetting the running start time point, or triggering the test start at any time through the delay circuit and the key, and the user can specifically set according to the needs through the prior art means.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration only, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims, specification and equivalents thereof.

Claims (9)

1. A running test system is characterized by comprising a host, at least one extension, a loudspeaker and a plurality of electronic identity labels;
the host is used as a system main control node and is connected with an upper computer system through a wireless communication module to carry out information interaction, the host comprises a main singlechip, and a display, a voice module, a card reader and a satellite positioning system receiving module which are respectively connected with the main singlechip, and the card reader is matched with an electronic card or electronic equipment carrying user identity information for use and used for a tester to sign in;
the extension set is arranged beside the runway as a sub-node, is in communication connection with the host through a wireless communication module, and is provided with a sub-single chip microcomputer and a sensor connected with the sub-single chip microcomputer, wherein the sensor is used for sensing a signal emitted by the electronic identity tag and feeding back the sensed signal to the sub-single chip microcomputer, and the sub-single chip microcomputer processes the signal, performs timing/circle counting aiming at the electronic identity tag and feeds back the processed information to the host;
the loudspeaker is connected with the host and is used for playing the start running countdown prompt voice;
the electronic identity tag is internally provided with a positioning module for transmitting position information, and the position information is fed back to the host through a satellite positioning system.
2. A running test system as claimed in claim 1, wherein when there are a plurality of extension sets, each extension set is connected to the host computer through the loRa wireless communication module, and the host computer is connected to the upper computer system through the mobile wireless communication module.
3. A running test system according to claim 2, wherein the mobile wireless communication module is a 4G wireless communication module USR-LTE-7S.
4. A running test system according to claim 1 wherein the sensors are EVS based MIMO antenna arrays.
5. A running test system as claimed in claim 1, wherein the satellite positioning system receiving module of the host computer is a GPS/beidou positioning module S1218-BD.
6. A running test system according to claim 1, wherein the positioning module built in the electronic identity tag is an OTrack-128 multi-mode multi-frequency chip.
7. A running test system as claimed in claim 1 wherein the voice module employs a WT588D voice chip.
8. A running test system according to claim 1, wherein the card reader is an RFID card reader.
9. A running test system according to any one of claims 1-8, wherein the main singlechip is an STM32F429IGT6 singlechip, and the sub-singlechip is an STM32F103 singlechip.
CN202021529873.9U 2020-07-29 2020-07-29 Running test system Active CN212782050U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113627372A (en) * 2021-08-17 2021-11-09 北京伟景智能科技有限公司 Running test method, system and computer readable storage medium
CN113713359A (en) * 2021-08-10 2021-11-30 深圳市恒康佳业科技有限公司 Running timing counting device based on microwave technology

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113713359A (en) * 2021-08-10 2021-11-30 深圳市恒康佳业科技有限公司 Running timing counting device based on microwave technology
CN113627372A (en) * 2021-08-17 2021-11-09 北京伟景智能科技有限公司 Running test method, system and computer readable storage medium
CN113627372B (en) * 2021-08-17 2024-01-05 北京伟景智能科技有限公司 Running test method, running test system and computer readable storage medium

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