CN202494782U - Offshore rescue positioning device and system thereof - Google Patents
Offshore rescue positioning device and system thereof Download PDFInfo
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- CN202494782U CN202494782U CN2012200558300U CN201220055830U CN202494782U CN 202494782 U CN202494782 U CN 202494782U CN 2012200558300 U CN2012200558300 U CN 2012200558300U CN 201220055830 U CN201220055830 U CN 201220055830U CN 202494782 U CN202494782 U CN 202494782U
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Abstract
The utility model provides an offshore rescue positioning device and a system thereof. The offshore rescue positioning device comprises a microprocessor, a GPS device, and a wireless communication device, wherein the microprocessor is connected with the GPS device and the wireless communication device; the microprocessor comprises a geographical position information acquisition interface which is connected with the GPS device, a GPRS interface and/or a GSM interface connected with the wireless communication device, an alarm button used for generating various alarm and asking for help signals, and a main control module which is connected with the geographical position information acquisition interface, the GPRS interface and/or the GSM interface, and the alarm button; and the main control module is used for transmitting the alarm signals and the position information to a remote terminal for asking for help through the wireless communication device. The offshore rescue positioning device of the utility model adopts an embedded-type integrated chip to realize a positioning function, has small volume and light weight, can position a location where emergency occurred and realize quick rescue, enhance the safety precaution and management pre-control abilities of the offshore rescue system, reduce the offshore safety accident rate, and minimize the loss in lives and property.
Description
Technical field
The utility model relates to the martime rescue device, particularly a kind of martime rescue locating device and system thereof.
Background technology
Existing martime rescue system is generally obtained the sick and wounded's possible position through distress signal or eyewitness, this mode is given to set out to give first aid to and brought pinpoint technical difficulty and give first aid to delay often owing to factor affecting such as sea situation, meteorologies.Along with the increase of off-lying sea " non-war " uses of force task, further promoting off-lying sea medical aid ability has become a urgent problem that needs to be resolved hurrily.Along with the development of Microcomputer Technology, embedded development platform technology, wireless communication technology etc., make that the robotization of giving first aid to flow process, the information-based improvement are feasible.
The utility model content
The fundamental purpose of the utility model is to overcome the above-mentioned shortcoming of prior art, proposes a kind ofly based on Embedded low-power consumption, low cost, can realize the martime rescue locating device and the martime rescue system of physiological parameter collections such as electrocardio, pulse and body temperature and transmission.
The utility model adopts following technical scheme:
A kind of martime rescue locating device; Comprise microprocessor, GPS device and wireless communication apparatus; This microprocessor links to each other with radio communication device with the GPS device; It is characterized in that: said microprocessor comprises the geographical location information acquisition interface that links to each other with said GPS device, the GPRS interface that links to each other with said wireless communication apparatus and/or GSM interface, is used to produce the alarm button of various warning distress signals and the main control module that links to each other with alarm button with above-mentioned geographical location information acquisition interface, GPRS interface and/or GSM interface, and this main control module is used for alerting signal and positional information are sent to the far-end emergency through wireless communication apparatus.
Further; Comprise that also physiological parameter detecting device, said microprocessor correspondence are provided with the human body physiological parameter acquisition interface that links to each other with this physiological parameter detecting device; This human body physiological parameter acquisition interface links to each other with said main control module, and said main control module obtains the human body physiological parameter signal in real time to carry out analyzing and processing and be sent to far-end through wireless communication apparatus.
Further, said wireless communication apparatus adopts the GPRS wireless communication module.
Further, said microprocessor adopts the S3C2440 processor.
Further, also comprise linking to each other and be used for the SD card of stored position information and human body physiological parameter information with said main control module.
A kind of martime rescue system is characterized in that: comprise arbitrary martime rescue locating device that power is above-mentioned and through the wireless network remote monitoring server of communication with it.
Can be known by above-mentioned description to the utility model, compared with prior art, the utlity model has following beneficial effect: the martime rescue locating device of the utility model adopts embedded integrated chip to realize that positioning function, volume are little, in light weight.When running into dangerous situation; Trigger alarm button; Microprocessor can be sent to the emergency of remote monitoring server through the GPRS module with positional information and human body physiological parameter information; Can locate dangerous situation occurrence positions, rapid rescue fast, improve the safety precaution and the preparatory control ability of management, reduction maritime safety accident rate, minimizing life and property loss of martime rescue system.
Description of drawings
Fig. 1 is the structural representation of the utility model;
Fig. 2 is that the main control module of the utility model is connected synoptic diagram with wireless communication apparatus;
Fig. 3 is the main control module of the utility model and the synoptic diagram that is connected of GPS device.
Embodiment
Below the utility model is done further to describe through embodiment.
With reference to Fig. 1, Fig. 2, Fig. 3, a kind of martime rescue locating device comprises microprocessor 1, GPS device 2 and wireless communication apparatus 3, this microprocessor 1 links to each other with radio communication device 3 with GPS device 2.Microprocessor 1 comprise the geographical location information acquisition interface 11 that links to each other with GPS device 2, the GPRS interface 12 that links to each other with wireless communication apparatus 3 with GSM interface 13, be used to produce the alarm button 14 of various warning distress signals and the main control module 15 that links to each other with geographical location information acquisition interface 11, GPRS interface 12, GSM interface 13 and alarm button 14.When the button 14 that pushes for emergency, main control module 15 can be sent to the far-end emergency through wireless communication apparatus 3 with alerting signal and positional information.Microprocessor 1 can adopt the S3C2440 processor; It has 3 URAT and a plurality of I/O serial ports, the different warning message of each button design, and wireless communication apparatus 3 adopts the Q2403GPRS wireless communication module of Wavecom company; This chip is integrated radio circuit and GPRS BBP; Support 900/1800 double frequency, complete GSM and GPRS wave point is provided, have 16Mflash and 2MSRAM; Support multiple communication modes such as data, voice, short message, the interface connection layout of microprocessor and GPRS wireless communication module is as shown in Figure 2.The GPS device adopts the GPS9808OEM module of Leadtek company, has that structure is small and exquisite, the characteristics of function admirable, and the warm start time is less than 8s; The reacquisition time is less than 0.1s; Less than 5m, data layout is supported standard NMEA-0183, SIRF binary protocol to bearing accuracy under difference modes; Power consumption is 215mW only, is highly suitable for using in power consumption, the volume requirement higher system.GPS9808 is connected as shown in Figure 3 with the interface of S3C2440.Positional information is sent to ARM9 S3C2440 through serial ports with the NMEA-0183 form, sends through GPRS wireless communication module 3 again.
The utility model comprises that also physiological parameter detecting device 4, microprocessor 1 correspondence are provided with the human body physiological parameter acquisition interface 16 that links to each other with this physiological parameter detecting device 4; This human body physiological parameter acquisition interface 16 links to each other with main control module 15, and physiological parameter detecting device 4 can be used for signals such as human body electrocardio, pulse, body temperature.When main control module 1 detects human body physiological parameter when unusual, can automatically alerting signal and human parameters signal be sent to the far-end emergency through the GPRS wireless communication module.The utility model also is provided with to link to each other with main control module 15 and is used for the SD card 17 of stored position information and human body physiological parameter information.
The martime rescue locating device of the utility model with through wireless network with it the remote monitoring server of communication form the martime rescue system jointly; Realize human body physiological parameter collection, parameter and analysis through GPRS network; Can locate dangerous situation occurrence positions, rapid rescue fast, improve the safety precaution and the preparatory control ability of management, reduction maritime safety accident rate, minimizing life and property loss of martime rescue system.
An above-mentioned embodiment that is merely the utility model, but the design concept of the utility model is not limited thereto allly utilizes this design that the utility model is carried out the change of unsubstantiality, all should belong to the behavior of invading the utility model protection domain.
Claims (6)
1. martime rescue locating device; Comprise microprocessor, GPS device and wireless communication apparatus; This microprocessor links to each other with radio communication device with the GPS device; It is characterized in that: said microprocessor comprises the geographical location information acquisition interface that links to each other with said GPS device, the GPRS interface that links to each other with said wireless communication apparatus and/or GSM interface, is used to produce the alarm button of various warning distress signals and the main control module that links to each other with alarm button with above-mentioned geographical location information acquisition interface, GPRS interface and/or GSM interface, and this main control module is used for alerting signal and positional information are sent to the far-end emergency through wireless communication apparatus.
2. a kind of martime rescue locating device as claimed in claim 1; It is characterized in that: comprise that also physiological parameter detecting device, said microprocessor correspondence are provided with the human body physiological parameter acquisition interface that links to each other with this physiological parameter detecting device; This human body physiological parameter acquisition interface links to each other with said main control module, and said main control module obtains the human body physiological parameter signal in real time to carry out analyzing and processing and be sent to far-end through wireless communication apparatus.
3. according to claim 1 or claim 2 a kind of martime rescue locating device, it is characterized in that: said wireless communication apparatus adopts the GPRS wireless communication module.
4. according to claim 1 or claim 2 a kind of martime rescue locating device, it is characterized in that: said microprocessor adopts the S3C2440 processor.
5. a kind of martime rescue locating device as claimed in claim 2 is characterized in that: also comprising links to each other with said main control module is used for the SD card of stored position information and human body physiological parameter information.
6. a martime rescue system is characterized in that: comprise the described arbitrary martime rescue locating device of claim 1 to 4 and pass through the wireless network remote monitoring server of communication with it.
Priority Applications (1)
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CN2012200558300U CN202494782U (en) | 2012-02-21 | 2012-02-21 | Offshore rescue positioning device and system thereof |
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CN2012200558300U CN202494782U (en) | 2012-02-21 | 2012-02-21 | Offshore rescue positioning device and system thereof |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103340610A (en) * | 2013-06-26 | 2013-10-09 | ***广州总医院 | Remote emergency medical system based on various wireless communication techniques |
CN104751596A (en) * | 2013-12-30 | 2015-07-01 | 中国科学院深圳先进技术研究院 | Distress signal sending and receiving method, device and system |
CN105919572A (en) * | 2016-06-12 | 2016-09-07 | 王颖 | Maritime emergency arm-type electronic measuring instrument with integrated function of vital sign and blood oxygen measurement |
-
2012
- 2012-02-21 CN CN2012200558300U patent/CN202494782U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103340610A (en) * | 2013-06-26 | 2013-10-09 | ***广州总医院 | Remote emergency medical system based on various wireless communication techniques |
CN104751596A (en) * | 2013-12-30 | 2015-07-01 | 中国科学院深圳先进技术研究院 | Distress signal sending and receiving method, device and system |
CN105919572A (en) * | 2016-06-12 | 2016-09-07 | 王颖 | Maritime emergency arm-type electronic measuring instrument with integrated function of vital sign and blood oxygen measurement |
CN105919572B (en) * | 2016-06-12 | 2019-05-03 | 王颖 | The arm-type vital sign of sea emergency and blood oxygen integrated type electrical measuring instrument |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20121017 Termination date: 20130221 |