WO2019220314A1 - Unité de commande du suivi du collier d'un animal pourvue d'un capteur d'authentification wifi - Google Patents

Unité de commande du suivi du collier d'un animal pourvue d'un capteur d'authentification wifi Download PDF

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Publication number
WO2019220314A1
WO2019220314A1 PCT/IB2019/053941 IB2019053941W WO2019220314A1 WO 2019220314 A1 WO2019220314 A1 WO 2019220314A1 IB 2019053941 W IB2019053941 W IB 2019053941W WO 2019220314 A1 WO2019220314 A1 WO 2019220314A1
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WO
WIPO (PCT)
Prior art keywords
sensor
data
ssid
tracking controller
broadcast
Prior art date
Application number
PCT/IB2019/053941
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English (en)
Inventor
Terrence Keith Ashwin
Original Assignee
Terrence Keith Ashwin
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Terrence Keith Ashwin filed Critical Terrence Keith Ashwin
Publication of WO2019220314A1 publication Critical patent/WO2019220314A1/fr

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/029Location-based management or tracking services
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K11/00Marking of animals
    • A01K11/006Automatic identification systems for animals, e.g. electronic devices, transponders for animals
    • A01K11/008Automatic identification systems for animals, e.g. electronic devices, transponders for animals incorporating GPS
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/38Services specially adapted for particular environments, situations or purposes for collecting sensor information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/90Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/02Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
    • H04W84/10Small scale networks; Flat hierarchical networks
    • H04W84/12WLAN [Wireless Local Area Networks]

Definitions

  • the present invention relates to an animal tracking controller unit having a wifi sensor for authenticating an animal identity and ownership.
  • wireless communication systems such as wifi and blue tooth routers are well known.
  • wireless communication devices which are enabled to report the occurrence of a notifiable event through the internet are well known.
  • a suitably enabled tracking device may be programmed to transmit a gps coordinate notification to an internet server upon a vehicle being involved a collision. The event is logged, stored on the server and the event data being individually transmitted as a report at a later point to a user, again through internet and GSM communication.
  • the invention pertains to the use of a BSSID (basic service set identifier) associated with wifi communication devices as a unique device identification means.
  • BSSID basic service set identifier
  • every wifi engine is manufactured with a unique BSSID at time of manufacture and the BSSID is fixed and non-changeable. Accordingly, when the wifi engine of a wireless communication device broadcasts its identification data - the BSSID is broadcast and readable by any suitably enabled device.
  • the unique BSSID can be even be detected by unaffiliated or unpaired wifi devices thus making identification possible. It would thus be beneficial to create a method and apparatus for using the BSSID of a wifi communication device for at least one of: securely communicating data; uniquely identifying and tracking the user of such device; authenticating the identity of a device user; enabling access of a device user; regulating use of electronic devices; regulating use of software; activating device or software functionality; use for emergency purposes.
  • the invention seeks to provide a suitable I/O devices for use with a wireless network communication system that at least partially ameliorates the abovementioned disadvantages associated with the prior art.
  • I/O refers to devices being input-output enabled, whereby they can transmit data and process instructional data received and transmitted.
  • animal collar extends to any apparatus which is securable about an animal, which collar incorporates a sensor of the invention.
  • a tracking controller unit having a wireless communication identification sensor comprising a wifi BSSID combined with programmable SSID data, wherein the BSSID in combination with the programmable data is configurable to identify the sensor.
  • the sensor is affiliated with a user whose identity and authority to enable computing device functionality is registered on a computing device affiliated database.
  • the sensor is affiliated with an object such as a vehicle whose identity and control thereof is registered on a computing device affiliated database.
  • the sensor may not be affiliated with any database, rather it is a standalone unit which transmits user identity and location data in accordance with notification parameters.
  • the programmable data comprises an instruction data set, wherein a computing device with enabling software for analysing and processing the data set causes an activation, alternately deactivation of a function associated with the sensor.
  • a computing device with enabling software for analysing and processing the data set causes an activation, alternately deactivation of a function associated with the sensor.
  • the first three programmable characters of said programmable data when using enabling software to analyse and process the SSID data - result in the initiation of a message to be transmitted by the sensor.
  • the activation of a sensor transmits a distress notification to the nearest appropriate emergency service provider including sensor gps coordinates.
  • the sensor identifies at least one of the user or an object affiliated with the user such as a vehicle.
  • the activation of a controller wifi sensor broadcasts an emergency distress notification which notification is automatically detected by paired computing devices, which devices may in turn have device functionality activated.
  • the sensor information is readable using a suitably enabled software application on a wireless communication device, wherein the software, once activated, searches for wifi networks resulting in sensors within wifi range being detected.
  • the signal strength of the sensor relative to the wireless communication device is used to determine the location of the sensor, when using the enabling software.
  • the software application which when loaded on to a suitably enabled computing device, serves as the user interface to activate the sensor functionality.
  • the software application may either pair with an external sensor, alternately, utilise its own hardware having BSSID and SSID and thereby enabling the controller unit to act as a sensor of the invention.
  • the software application enables the user to input and store personal identifying information on the user device, alternately on a remote server which has enabling software and hardware to interact with the software application and communicate the user information.
  • tracking may be activated by any person by activating a tracking button integral with the animal collar.
  • a notification is transmitted by the sensor to the owner of the animal in accordance with predetermined notification criteria.
  • the notification includes the gps coordinates of the collar.
  • the collar may additionally be linked to biometric data such as a heart rate.
  • the software application utilises the sensor gps coordinates to transmit the appropriate notification to predetermined persons advising them of the functionality activation or emergency service request.
  • a person receiving such notification may receive a prompt to track the sensor.
  • the sensor transmits a distress notification to security personnel whose notification details are stored on the sensor. Thereafter the person receiving the notification to their computing device can click on a "click to follow" link, whereafter the sensor movement is tracked.
  • the senor comprises event triggered programmable data.
  • the programmable data broadcast with the BSSID comprises sensor environment information.
  • a user whose sensor comprises a biometric and gps enabled sensor will broadcast user biometric information with a location of the sensor.
  • the trigger event may be caused due to passivity or non detection of controller sensor.
  • a router does not detect the controller sensor SSID broadcast for a predetermined period of time - sensor tracking is activated.
  • the controller sensor comprises a sensor for detection of at least one of moisture, pressure, light, impact, temperature, biometrics, altitude, chemical composition, sound, wherein a predetermined sensor reading results in the activation, alternately deactivation of a sensor communication device function.
  • the senor additionally comprises at least one of a gps device, a speaker, a light, a vibration generator or an electrical shock generator which are activated in accordance with programmable parameters.
  • a sensor notification is generated upon function criteria being met, wherein in addition to the sensor data being broadcast, a notification is sent to at least one of a predetermined telephone number, email or other communication destination (such as a whatsapp, website, hashtag, social media profile) using a suitably enabled communication device such as a phone, tablet or PC having GSM or wifi capabilities.
  • a predetermined telephone number such as a whatsapp, website, hashtag, social media profile
  • a suitably enabled communication device such as a phone, tablet or PC having GSM or wifi capabilities.
  • the senor is enabled to operate as either
  • the device comprises RAM for storage of user data and whereby the data is accessible by using a web browser of a paired wireless communication device.
  • the senor functioning as a router may be activated by a plurality of paired sensors.
  • the senor comprises a signal strength detector thereby enabling at least one of directional and distance tracking of the device while in range of one or more wifi routers.
  • the device can activate predetermined notifications, alternately cause the activation of predetermined functions upon the movement pattern of the device.
  • a user whose sensor comprises a water sensor will broadcast excessive moisture events should the animal fall into water.
  • security personnel responsible for tracking an animal which has a sensor on the invention activated - may track the animal utilising suitably enabled software.
  • the person tracking the animal will be able to scan for wifi networks in range, identify the specific sensor and determine details associated with the emergency including animal and owner details, image and time of tracking notification.
  • the notification may comprise a GPS location and visual details of the sensor user, which are viewable by devices tracking the sensor.
  • the senor comprises at least two modes of functionality, wherein the sensor "bleeps" or remains in a dormant sleep mode.
  • the frequency of audible bleeps are variable in accordance with activation parameters.
  • Activation of the controller may include the broadcast of a sound tone to provide audible confirmation that the controller has been activated
  • the senor comprises data fields which are editable and where data is uploadable onto the sensor and accessible through a web browser. Accordingly, a third party user does not require specialised software to interrogate, alternately edit the data on the device.
  • security personnel searching for an animal in an area where the animal having a sensor is suspected of being concealed - will be able to detect the SSID broadcast and using sensor signal strength be able to detect the approximate location of the animal.
  • a plurality of wifi routers are installed in the area where the animal may be found to create a network of wifi stations thereby providing an extended wifi coverage to track the animal within a desired area. The wifi routers collaborate within one another to enable tracking of the animal and triangulation coordinates where multiple routers detect the animal simultaneously.
  • the senor is programmable whilst operative, wherein programming instructions are transmitted to the sensor from a remote communication device such as a computer or phone having enabling software.
  • a remote communication device such as a computer or phone having enabling software.
  • This is typically transmitted using a wireless communication protocol such as wifi, Bluetooth or GSM.
  • the senor is programmable to switch at least part of its functionality on or off; and where the functionality is enabled or restricted for a limited duration.
  • the controller is turned off, alternately the signal strength is below a predetermined level - the device utilising the controller for function activation is restricted from such functionality, such use of a vehicle, alternately, the functionality is activated, such a gps tracking activation.
  • input and output data may be communicated to and from the sensor via a sensor specific data address such as an cellular phone number, IP address, IPv6 address, MAC Address, or an equivalent address format that will identify a specific sensor or virtual address where data can be transferred via the Internet or other wireless communication protocol.
  • a sensor specific data address such as an cellular phone number, IP address, IPv6 address, MAC Address, or an equivalent address format that will identify a specific sensor or virtual address where data can be transferred via the Internet or other wireless communication protocol.
  • a plurality of sensors may be paired, wherein sensor activity or a lack thereof of a paired sensor is communicated to other paired sensors. Accordingly, non-responsiveness of a paired sensor will result in a functioning paired sensor - transmitting a fault report in accordance with the sensor's fault detection transmission criteria.
  • the senor has 'store and forward' capability, wherein transmission of sensor based data results in deleting of the storage cache on the sensor, which is typically deleted on a first in/first out basis, although deletion criteria may be modified in accordance with user preferences.
  • a method of tracking a sensor of the invention and enabling computing device functionality in the absence of data transfer between two sensors of the invention comprising the step of activating the controller wifi and first sensor, the controller sensor and a second sensor affiliated with a computing device detecting each other by virtue of their respective SSID broadcasts; the SSID information broadcast resulting in an authentication of the user whereafter the computing device enables functionality in accordance with predetermined use criteria.
  • a user driving a vehicle having a controller sensor and a mobile phone being a second sensor paired to the controller sensor - will be able to open a software application on the phone such as a camera, voice recorder app or emergency contact software application.
  • the user can activate the software applications by voice activation. As such the user does not have to be able to be in physical contact with the controller sensor to activate the required emergency service or phone software functionality.
  • a tracking controller unit having a wireless communication identification sensor comprising a unique wireless identifier combined with programmable broadcast data, wherein the programmable data is configurable to identify the sensor.
  • the sensor is affiliated with a user whose identity and authority to enable computing device functionality is registered on a computing device affiliated database.
  • the sensor is affiliated with an object such as a vehicle whose identity and control thereof is registered on a computing device affiliated database.
  • the sensor may not be affiliated with any database, rather it is a standalone unit which transmits user identity and location data in accordance with notification parameters.
  • the sensor data comprises an instruction data set, wherein said data causes the activation, alternately deactivation of a function associated with the sensor.
  • the wireless communication identification sensor having a unique identifier is enabled to perform functions and employ methods of use as they pertain to the aforementioned uses of a BSSID combined with programmable SSID data to identify the sensor
  • a wifi router comprises a unique BSSID in conjunction with a SSID which typically has 31 bytes of programmable characters. Wifi devices simply scan for the name allocated to a wifi device and not the BSSID. Upon further interrogation, the BSSID may be revealed although the BSSID is not replicable.
  • the characters of the SSID are used to either transmit information, alternately control the activation a desired functionality.
  • the initial 3 characters of a SSID are allocated to sending a message type, by example "@@@" results in a request to access files notification. The remaining characters pertain to information of the device affiliated with the user or information pertaining to the user.
  • the information contained in the SSID broadcast is processed in accordance with pre-programmed parameters and a desired function activated.
  • a user scanning for wifi signals and having the software application of the invention installed onto their computing device - will be able to process and analyse the information contained in the SSID broadcast.
  • the SSID broadcast and its analysis thereof is thus achieved without data transfer, rather via SSID broadcast and wifi receiver detecting the broadcast.
  • a lack of data availability or connectivity will still enable line-of-site communication between a sensor and a computing device having the software application of the invention installed.
  • tracking may be activated by any person by activating a tracking button integral with the animal collar.
  • a notification is transmitted by the sensor to the owner of the animal in accordance with predetermined notification criteria.
  • the notification includes the gps coordinates of the collar.
  • the collar may additionally be linked to biometric data such as a heart rate. Where the animal heart rate moves out of acceptable parameters - a notification with gps coordinates is generated. In the case of an animal being poached - the absence of a heart rate will result in a death notification being transmitted. This will enable early and precise notification to anti-poaching units, which would assist in the locating and capture of poachers.
  • the sensor functions as a router may be activated by a plurality of paired sensors.
  • a group of animals may have a single sensor functioning as a router and a plurality of animals each having a sensor to activate the router.
  • the individual animal sensor would activate an emergency notification where said animal's heart rate changed to a notification rate or lack thereof.
  • the router transmits a tracking notification to a person or server responsible for tracking the animal in accordance with predetermined notification parameters.
  • the tracking unit sensor only broadcasts user identification in its SSID upon an authentication data having been received from an interrogating sensor, which interrogating sensor broadcasts authenticating data in its SSID.
  • the SSID data broadcast from the tracking unit sensor or part of the data broadcast is encrypted and requires decryption by authorised user profiles or devices to decrypt the data.
  • the SSID is displayed as an alpha numeric broadcast, whilst the additional SSID data is encrypted and viewable only upon encryption.
  • the presence of a user sensor is viewable to all wifi readers however the confidential details associated with the encrypted data is viewable upon the interrogating sensor broadcasting a decryption code in its SSID, which in turn results the broadcast broadcasting decrypted SSID data.
  • the SSID data is decrypted by the interrogating sensor.
  • the interrogating sensor is enabled to decrypt the identification sensor data by itself.
  • the SSID data may be decrypted by connecting to remote database which decrypts the encrypted SSID data.
  • the sensor may shut down its signal from being broadcast upon detecting a non-affiliated BSSID or SSID.
  • the sensor may recommence broadcast upon identifying an affiliated SSID, alternately after a predetermined time period has lapsed after the non-affiliated SSID has ceased being detected.
  • decoy sensors broadcasting decoy SSIDs may be attached to not-at-risk animals or in static positions in the protected area where protected animals wearing the collar sensor of the invention roam. These static sensors may be activated and deactivated to disguise the fact that they are decoys.
  • Alert notifications may be transmitted when a paired sensor is no longer detectable, alternately when the sensor moves beyond an acceptable distance from the group of sensors or geolocation parameters. Accordingly, by interrogating one device - all participants in the area with device are recorded including when the devices were within range - this allows for confirmation whether all animals having a tracking collar are accounted for.
  • the sensor upon activation of a controller tracking unit wifi - the sensor is paired to and utilises the controller's wifi engine and BSSID and SSID. Accordingly, the activation of the controller sensor results in the sensor BSSID and SSID being broadcast for detection by relevant communicating devices. Said broadcast is detected by a second sensor affiliated with a computing device which the user intends accessing and activating functionality such as location tracking.
  • This step of sensor detection and authentication is achieved without data transfer, in particular, it achieved by simply detecting SSID broadcasts and in some instances, modification of sensor SSID broadcast in response to response to third party sensor broadcasts detected.
  • additional authentication such as user biometric data or a PIN may be required before accessing the tracking unit sensor or its SSID.
  • Said additional verification input is performed by either following input prompts on the computing device used to monitor the tracking unit sensor.
  • the user may be requested to scan his fingerprints or retina using either a suitable biometric reader associated with the tracking unit sensor.
  • the SSID information broadcast thereby results in an authentication of the user whereafter the tracking unit sensor enables functionality or data disclosure in accordance with predetermined use criteria.
  • the tracking function may be enabled by a controller unit being a router and having a sensor of the invention, alternately using an enabling software application on a computing device which device functions as a sensor of the invention.
  • a sensor triggered event causes the BSSIDs in a predetermined distance from the sensor to be recorded and tracked. This allows for the potential recording of a BSSID of other animals for determining group interaction and movement.
  • the sensors of the invention enable computing device functionality to be enabled without data transfer. This is enabled due to the BSSID and SSID being broadcast whilst the wifi engine is operational. Any suitably enabled wifi reader is able to detect the presence and potentially the proximity of the wifi engine based on signal strength.
  • the invention thus enables computing device functionality even when network connection problems are experienced by a computing device and a remote authentication server. As will be appreciated, the invention ameliorates the problems associated with data transfer, which is dependent on a data availability and internet connectivity; and wifi devices without access to data usage, which are unable to transfer data.
  • the senor has a unique wifi tag which is programmable to correspond with an object or person. In doing so, the object or person status is monitorable in accordance with the sensor capabilities.
  • Sensor events may be transmitted to local server, alternately a cloud based server or a combination thereof.
  • a MySQL database would typically be used to track and record sensor events.
  • the sensor selects the destination to where specific event data must be transmitted thereby maintaining data confidentiality and preventing unauthorised interception by a non-authorised reader. Accordingly, the sensor may broadcast both restricted and unrestricted data in addition to being able to transmitted restricted confidential data to a server.
  • Input and output data may be communicated to and from the sensor via a sensor specific data address such as an IP address, IPv6 address, MAC Address, or an equivalent address format that will identify a specific device or virtual address where data can be transferred to on the Internet. Accordingly, it is possible to dial into the closed-loop wifi network server and provide output instructions to a specific sensor which in turn will result in the object functioning.
  • a sensor specific data address such as an IP address, IPv6 address, MAC Address, or an equivalent address format that will identify a specific device or virtual address where data can be transferred to on the Internet. Accordingly, it is possible to dial into the closed-loop wifi network server and provide output instructions to a specific sensor which in turn will result in the object functioning.
  • dormant wifi engines may be activated for a limited period of time as and when the sensor data is needed. Activation can be in response to a physical event which event is determined by a suitable sensor, such as an impact sensor, a time based event, proximity to a RFID type device resulting in the activation of the wifi engine from a sleep condition. This results in a prolonged battery life where the wifi engine does not utilise an external power supply.
  • a suitable sensor such as an impact sensor, a time based event, proximity to a RFID type device resulting in the activation of the wifi engine from a sleep condition.
  • the sensor comprises an independent battery power supply to enable the transmission of event notifications.
  • the sensor battery may additionally be solar powered and incorporate photovoltaic cells to charge the battery.
  • the sensor comprises at least one environmental variation sensor for detecting environmental changes.
  • environmental variations sensor for detecting environmental changes.
  • These may include at least one of a thermostat sensor, impact sensor, light sensor, audio sensor, chemical composition sensor, electrical magnetic sensor, gps sensor, altitude sensor or humidity sensor.
  • the sensor can itself directly communicate with a remote server data address and does not require a sensor login prior to receiving or transmitting data to and from the sensor.
  • the invention is not limited to the precise details described above. Modifications may be made and other embodiments developed without departing from the spirit of the invention.
  • data generated from sensor activity may be stored at least partially on the sensor itself - the sensor having data storage capacity.
  • storage of event data may be stored on one or more of the sensors thereby enabling sharing of data storage generated from sensor activity.
  • data stored may be duplicated on one or more connected sensors thereby serving as a data back-up means.
  • input and output data may be jointly processed by the sensors to improve data processing abilities.
  • the term BSSID may extend to any unique identifier whose unique identifier can be broadcast and wirelessly detected by a suitably enabled device.
  • a wireless communication device having a unique identifier in addition to a BSSID - interacts with one or more electronic communication devices by virtue of the unique identifier and/or the interaction of the unique identifier with the BSSID of the wireless communication device.
  • the unique identifier may be a mobile phone number, or IMEA number affiliated with a mobile phone or GSM modem.
  • the method of broadcast may be any wireless protocol including wifi, gsm, Bluetooth.

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Environmental Sciences (AREA)
  • Radar, Positioning & Navigation (AREA)
  • Birds (AREA)
  • Zoology (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Telephonic Communication Services (AREA)

Abstract

La présente invention concerne un collier de suivi d'un animal pourvu d'un capteur d'identification de communication sans fil. Le capteur comprend une BSSID WiFi combinée à des données de SSID programmables. La BSSID en combinaison avec les données programmables peut être configurée de façon à identifier le capteur. En cours d'utilisation, le SSID est diffusé lors d'une activation du dispositif de commande du suivi. Le capteur peut comprendre une unité autonome qui transmet des données relatives à l'utilisateur. Les données sont incorporées dans la diffusion du SSID. De plus, les données de l'animal peuvent être lisibles par l'intermédiaire d'autres protocoles de communication sans fil, par exemple RFID, NFC ou Bluetooth. En cours d'utilisation, une identification de l'utilisateur est diffusée lors de la réception de données d'authentification par un capteur d'interrogation qui diffuse au moins une des données d'authentification dans son SSID de façon à permettre de diffuser des données du SSID de dispositif de commande du suivi déchiffrées. Les données du SSID ou certaines d'entre elles peuvent également être chiffrées et nécessiter un déchiffrement par des utilisateurs ou des dispositifs autorisés.
PCT/IB2019/053941 2018-05-14 2019-05-13 Unité de commande du suivi du collier d'un animal pourvue d'un capteur d'authentification wifi WO2019220314A1 (fr)

Applications Claiming Priority (2)

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ZA201803152 2018-05-14
ZA2018/03152 2018-05-14

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2617324A (en) * 2022-03-31 2023-10-11 Cambridge Animal Tech Ltd Animal condition monitoring

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US20120046041A1 (en) * 2010-08-23 2012-02-23 Hon Hai Precision Industry Co., Ltd. Portable electronic device and position tracking method of the device
US20120127980A1 (en) * 2007-08-17 2012-05-24 Kenneth Ray Quinn Wireless Network Notification, Messaging and Access Device
EP2908565A1 (fr) * 2014-02-14 2015-08-19 Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. Procédé, dispositif et environnement de réseau sans fil destinés à l'échange de données
US20150257104A1 (en) * 2014-03-10 2015-09-10 Samsung Electronics Co., Ltd. Method for controlling beacon signal of electronic device and electronic device thereof
US20150373521A1 (en) * 2014-06-23 2015-12-24 BeaconWatch, LLC Safety device utilizing a beacon
WO2016077816A1 (fr) * 2014-11-14 2016-05-19 Siegel, John Système et procédé de collecte et d'analyse de données d'animaux

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Publication number Priority date Publication date Assignee Title
US20050286456A1 (en) * 2004-06-24 2005-12-29 Mcnew Justin P System and method for broadcasting application-specific information in wireless local area networks
US20120127980A1 (en) * 2007-08-17 2012-05-24 Kenneth Ray Quinn Wireless Network Notification, Messaging and Access Device
US20120046041A1 (en) * 2010-08-23 2012-02-23 Hon Hai Precision Industry Co., Ltd. Portable electronic device and position tracking method of the device
EP2908565A1 (fr) * 2014-02-14 2015-08-19 Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. Procédé, dispositif et environnement de réseau sans fil destinés à l'échange de données
US20150257104A1 (en) * 2014-03-10 2015-09-10 Samsung Electronics Co., Ltd. Method for controlling beacon signal of electronic device and electronic device thereof
US20150373521A1 (en) * 2014-06-23 2015-12-24 BeaconWatch, LLC Safety device utilizing a beacon
WO2016077816A1 (fr) * 2014-11-14 2016-05-19 Siegel, John Système et procédé de collecte et d'analyse de données d'animaux

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2617324A (en) * 2022-03-31 2023-10-11 Cambridge Animal Tech Ltd Animal condition monitoring

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