CN205541300U - Swimming pool safety monitoring system based on microwave detection - Google Patents
Swimming pool safety monitoring system based on microwave detection Download PDFInfo
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- CN205541300U CN205541300U CN201620350484.7U CN201620350484U CN205541300U CN 205541300 U CN205541300 U CN 205541300U CN 201620350484 U CN201620350484 U CN 201620350484U CN 205541300 U CN205541300 U CN 205541300U
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- microwave
- swimming pool
- monitoring system
- emitter
- safety monitoring
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Abstract
The utility model relates to a swimming pool safety monitoring system based on microwave detection, reply chip, information processor and alarm module including a microwave emitter, microwave, the chip is replied in having only sign IP to the microwave, and detachably is fixed in on the trip swimmer head, a microwave emitter installs in monitoring regional top or peripheral, to monitoring regional interior interval nature transmitting microwave signal for the chip is responsied to the microwave that detects the control regional interior, and feeds back to information processor with the sign IP who detects, information processor receives the sign IP of microwave emitter feedback to be connected with alarm module. The utility model discloses a microwave detection, the information processor matched pair compares to increasing substantially the regional inspection speed of control, reducing rescue reaction time, found simple structure moreover, building cost is low, and later maintenance is simply convenient.
Description
Technical field
This utility model relates to safety monitoring technology field, more specifically refers to a kind of swimming pool safety monitoring system based on microwave detection.
Background technology
Swimming is the sports that a tradition is popular, the sports that men and women, old and young can participate in a variety of manners, but owing to the reasons such as the swimming skills of swimmer own or physical condition there will be drowning incident often.
At present, the security monitoring measure of swimming pool relies primarily on the modes such as lifeguard's monitoring and camera head monitor, lifeguard's monitoring needs to keep psychentonia and fatigue for a long time due to lifeguard, easily because of factor impacts such as carelessness, vision dead zones, the timely of drowning person is given first aid to, and part swimming pool exists lifeguard and is equipped with the situations such as deficiency;Camera head monitor is relatively big due to the video data volume, causes its processing speed slow, and drowning incident can not be found in time, and needs enough photographic head can cover whole swimming pool, and cost is high.In addition, it is also to allow swimmer carry a supervising device, by the supervising device collection swimmer's physiological status carried and diving depth and diving time information, alarm is started when its information reaches pre-set value, but which input cost is high, later maintenance is loaded down with trivial details, and carries during the swimming of this device the most inconvenient.
Summary of the invention
This utility model provides a kind of swimming pool safety monitoring system based on microwave detection, long to solve the existing swimming pool surveillance and control measure response time, and not in time, construction cost is high, the problems such as later maintenance is loaded down with trivial details in rescue.
This utility model adopts the following technical scheme that
A kind of swimming pool safety monitoring system based on microwave detection, including the first microwave emitter, microwave response chip, message handler and alarm module, described microwave response chip uniquely identifies IP in having, and is detachably secured to swimmer's head;Described first microwave emitter is installed on monitoring overlying regions or periphery, and intermittent in monitoring region is launched microwave signal, the microwave response chip in detecting monitoring region, and the information detected is fed back to message handler;Described message handler reception processes the first microwave emitter feedack, and is connected with described alarm module.
Further, also including the second microwave emitter being arranged at monitoring gateway, region, described second microwave emitter is connected with described message handler.
Further, described first microwave emitter is several, and several first microwave emitters described are arranged at intervals at monitoring overlying regions and/or periphery, and monitoring region is divided into several monitored spaces.
Further, described microwave response chip is removably installed on trip cap.
Further, described microwave response chip also includes that a memory module, memory module internal memory contain the information such as swimmer's personal information, the amount of money, swimming number of times and swimming time.
Further, described alarm module is transmitter receiver, broadcaster and display screen.
From the above-mentioned description to this utility model structure, compared to the prior art, this utility model has the advantage that
Microwave response chip is detachably secured to swimmer's head by this utility model, monitoring region intermittent is launched microwave signal by the first microwave emitter, and the characteristic being only absorbed by the water based on microwave signal, the microwave response chip being on the water surface in detection monitoring region, the mark IP contrast recorded on the mark IP of microwave response chip and message handler will be detected again, when finding not detect mark IP, this mark IP extinction time accumulative, when extinction time reaches pre-set value, message handler controls alarm module and reports to the police, thus remind lifeguard to rescue in time.It follows that this utility model not only device build simple in construction, construction cost is low, and later maintenance is simple and easy, and uses microwave to detect, message handler coupling contrast, thus increases substantially inspection speed and the response speed in monitoring region, improves rescue efficiency.
Accompanying drawing explanation
Fig. 1 is this utility model structured flowchart;
Fig. 2 is this utility model flow chart of steps.
Detailed description of the invention
The detailed description of the invention of this utility model embodiment is described with reference to the accompanying drawings.
Seeing figures.1.and.2, a kind of swimming pool safety monitoring system based on microwave detection, including 1, second microwave emitter 2 of several first microwave emitters, multiple microwave response chip 3, message handler 4 and alarm module 5.Microwave response chip 3 is detachably secured on the head of each swimmer, i.e. microwave response chip 3 is removably installed on swimming cap, and each microwave response chip 3 has and uniquely identifies IP, memory module.Several first microwave emitters 1 are arranged at intervals at monitoring region (i.e. swimming place) top or periphery, and swimming place is divided into several monitored spaces.First microwave emitter 1 launches the microwave response chip 3 in microwave signal detection swimming place at interval of a period of time, and the information such as mark IP of the microwave response chip 3 detected is sent to message handler 4.Second microwave emitter 2 is arranged at swimming place discrepancy circle mouth, for detecting the microwave response chip 3 of turnover swimming place, and sends this detection information to message handler 4.Message handler 4 is connected with first microwave emitter the 1, second microwave emitter 2 and alarm module 5 respectively, and accepts first microwave emitter the 1, second microwave emitter 2 transmitted information, judges whether that controlling alarm module 5 sends alarm by calculating simultaneously.Alarm module 5 can be transmitter receiver, broadcaster and the display screen etc. that lifeguard is hand-held.
See figures.1.and.2, be embodied as step the following detailed description of this utility model:
Step I: swimmer carries microwave response chip 3 and enters swimming place from swimming place discrepancy circle mouth, second microwave emitter 2 of swimming place discrepancy circle mouth detects mark IP of this microwave response chip 3, and this mark IP is sent to message handler 4, this mark IP and mark IP recorded are contrasted by message handler 4, if this mark IP is for being recorded, then record this mark IP, and this mark IP is shown on display screen.
Step II: several first microwave emitters 1 are at interval of the microwave signal launching twice characteristic frequency for 1 second simultaneously, this microwave signal can be several centimetres be drawn under water completely, thus mark IP of non-microwave response chip 3 under water in being only used for detection swimming place, and this information is fed back to message handler 4.
Step III: message handler 4 reception processes mark IP of the microwave response chip 3 that microwave emitter detects, and the mark IP contrast that will record in this mark IP and message handler 4, when finding that mark IP recorded is not detected at, the extinction time of this mark IP accumulative.
Step IV: when disappear mark IP add up extinction time reach pre-set value time, message handler 4 controls alarm module 5 and sends alarm, i.e. notify that lifeguard rescues by modes such as transmitter receiver, broadcaster or display screens, and by detected by which the first microwave emitter 1 before can disappearing according to disappearance microwave response chip 3, thus remind lifeguard preferentially to arrive at this monitored space.When mark IP disappeared is detected before accumulative extinction time reaches pre-set value again, accumulative extinction time resets, and continues monitoring.During display screen notice, display screen display all marks IP and the monitored space corresponding to this mark IP, it is that green shows that the mark IP not disappeared or extinction time are not up to mark IP of pre-set value, extinction time reaches mark IP of pre-set value and takes on a red color display, and can circulate a notice of in conjunction with transmitter receiver or broadcasting equipment voice.The pre-set value of extinction time is usually 1 minute, and certainly, swimmer can also arrange pre-set value according to self factor such as swimming or body constitution.
Step V: when swimmer leaves swimming place, microwave signal of launching second microwave emitter 2 detects mark IP of the microwave response chip 3 entrained by this swimmer, and feed back to message handler 4 and contrast, if there are this mark IP on message handler 4 record, and this mark IP is when being in accumulative extinction time, then deleting this mark IP record, display screen no longer carries out display monitoring to it simultaneously.
Mark IP in microwave response chip 3 is in addition to above-mentioned functions, it is also possible to for opening the electronic lock etc. of locker.Memory module internal memory in microwave response chip 3 contain the information, i.e. microwave response chip such as swimmer's personal information, the amount of money, swimming number of times and swimming time can brush ticket, open the door prohibit enter Swimming pool, buy swimming district in thing, record individual swimming planning.
Message handler 4 is in addition to above-mentioned functions, it is also possible to the statistics information such as swimmer current persons count and total number of persons on the same day, and shows on a display screen.Also can calculate swimming peak period, and swimming congested area can be calculated in conjunction with the monitored space that the first microwave emitter 1 is divided, remind swimmer.
Above are only detailed description of the invention of the present utility model, but design concept of the present utility model is not limited thereto, all changes utilizing this design that this utility model carries out unsubstantiality, the behavior invading this utility model protection domain all should be belonged to.
Claims (6)
1. a swimming pool safety monitoring system based on microwave detection, it is characterized in that: include the first microwave emitter, microwave response chip, message handler and alarm module, described microwave response chip uniquely identifies IP in having, and is detachably secured to swimmer's head;Described first microwave emitter is installed on monitoring overlying regions or periphery, and intermittent in monitoring region is launched microwave signal, the microwave response chip in detecting monitoring region, and the information detected is fed back to message handler;Described message handler reception processes the first microwave emitter feedack, and is connected with described alarm module.
2. according to a kind of based on microwave detection the swimming pool safety monitoring system described in claim 1, it is characterised in that: also including the second microwave emitter being arranged at monitoring gateway, region, described second microwave emitter is connected with described message handler.
3. according to a kind of based on microwave detection the swimming pool safety monitoring system described in claim 1, it is characterized in that: described first microwave emitter is several, several first microwave emitters are arranged at intervals at monitoring overlying regions and/or periphery, and monitoring region is divided into several monitored spaces.
4. according to a kind of based on microwave detection the swimming pool safety monitoring system described in claim 1, it is characterised in that: described microwave response chip is removably installed on trip cap.
5. according to a kind of based on microwave detection the swimming pool safety monitoring system described in claim 1, it is characterised in that: described microwave response chip also includes a memory module.
6. according to a kind of based on microwave detection the swimming pool safety monitoring system described in claim 1, it is characterised in that: described alarm module is transmitter receiver, broadcaster and display screen.
Priority Applications (1)
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CN201620350484.7U CN205541300U (en) | 2016-04-25 | 2016-04-25 | Swimming pool safety monitoring system based on microwave detection |
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CN201620350484.7U CN205541300U (en) | 2016-04-25 | 2016-04-25 | Swimming pool safety monitoring system based on microwave detection |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105701974A (en) * | 2016-04-25 | 2016-06-22 | 叶传华 | Swimming pool safety monitoring system based on microwave detection and method thereof |
CN109584508A (en) * | 2018-12-06 | 2019-04-05 | 叶传华 | Swimming pool safety monitoring system and method based on microwave detection |
CN111260885A (en) * | 2018-11-30 | 2020-06-09 | 百度在线网络技术(北京)有限公司 | Method, device, storage medium and terminal equipment for tracking swimming |
-
2016
- 2016-04-25 CN CN201620350484.7U patent/CN205541300U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105701974A (en) * | 2016-04-25 | 2016-06-22 | 叶传华 | Swimming pool safety monitoring system based on microwave detection and method thereof |
CN105701974B (en) * | 2016-04-25 | 2018-05-25 | 叶传华 | A kind of swimming pool safety monitoring system and method based on microwave detection |
CN111260885A (en) * | 2018-11-30 | 2020-06-09 | 百度在线网络技术(北京)有限公司 | Method, device, storage medium and terminal equipment for tracking swimming |
CN109584508A (en) * | 2018-12-06 | 2019-04-05 | 叶传华 | Swimming pool safety monitoring system and method based on microwave detection |
CN109584508B (en) * | 2018-12-06 | 2021-05-25 | 叶传华 | Swimming pool safety monitoring system and method based on microwave detection |
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Legal Events
Date | Code | Title | Description |
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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: 20160831 Termination date: 20200425 |