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Title:
WIRELESSLY TRIGGERING SMART DEVICES
Document Type and Number:
WIPO Patent Application WO/2015/101792
Kind Code:
A1
Abstract:
An electronic tag for wirelessly triggering smart devices includes an electronic tag configured to generate a trigger signal based on a defined movement of the electronic tag. The electronic tag is configured to transmit the trigger signal to a smart device using a Bluetooth protocol to initiate a programmed action by the smart device in response to receiving the trigger signal.

Inventors:
SHETE BAHUBALI (IN)
MALISETTY RAJEEVKUMAR (IN)
Application Number:
PCT/GB2015/050003
Publication Date:
July 09, 2015
Filing Date:
January 02, 2015
Export Citation:
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Assignee:
CONNOVATE TECHNOLOGY PRIVATE LTD (IN)
BINATONE TELECOM PLC (GB)
International Classes:
H04W4/20; H04W4/80
Foreign References:
US20130252556A12013-09-26
Other References:
BAHUBALI SHETE: "Indiegogo: An International Crowdfunding Platform to Raise Money Gecko -Make your smart phone SMARTER", 31 December 2013 (2013-12-31), pages 1 - 18, XP055185783, Retrieved from the Internet [retrieved on 20150424]
CONNOVATE: "Gecko Introduction", 13 September 2013 (2013-09-13), XP054975836, Retrieved from the Internet [retrieved on 20150424]
Attorney, Agent or Firm:
BALDWIN, Mark et al. (40 Bowling Green Lane, London EC1R 0NE, GB)
Download PDF:
Claims:
Claims

1. An electronic tag for wirelessly triggering a smart device, said electronic tag comprising:

a sensor to sense movement of the electronic tag; and

circuitry configured to generate a trigger signal in response to sensing by said sensor of a defined movement of the electronic tag and cause said trigger signal to be wirelessly transmitted to a smart device using a Bluetooth protocol to initiate a programmed action by said smart device in response to receiving said trigger signal.

2. An electronic tag as claimed in claim 1, wherein said electronic tag is configured to transmit said trigger signal using a Bluetooth low energy (BLE) protocol.

3. An electronic tag as claimed in claim 1 or 2, wherein said circuitry comprises at least one of a processor and a microcontroller unit.

4. An electronic tag as claimed in claim 1, 2 or 3, wherein said sensor comprises an accelerometer or a gyrometer. 5. An electronic tag as claimed in any one of the preceding claims, wherein said circuitry is configured to cause the wireless transmission of an alert signal to said smart device using said Bluetooth protocol if said sensor does not detect movement of said electronic tag within a predetermined period. 6. An electronic tag as claimed in any one of the preceding claims, wherein said circuitry is configured to generate different trigger signals in response to the sensing by said sensor of respective different defined movements of the electronic tag.

7. A wirelessly triggered smart device system comprising:

an electronic tag that has a sensor to sense movement of the electronic tag and circuitry configured to generate a trigger signal in response to sensing by said sensor of a defined movement of the electronic tag and cause said trigger signal to be transmitted wirelessly using a Bluetooth protocol; and a smart device configured to receive said wirelessly transmitted trigger signal and initiate a programmed action in response to receiving said trigger signal.

8. A wirelessly triggered smart device system as claimed in claim 7, wherein said smart device has a music player and is configured to initiate a programmed action of said music player in response to receiving said trigger signal.

9. A wirelessly triggered smart device system as claimed in claim 7 or 8, wherein said electronic tag is configured to transmit said trigger signal using a Bluetooth low energy (BLE) protocol.

10. A wirelessly triggered smart device system as claimed in claim 7, 8 or 9, wherein said circuitry comprises at least one of a processor and a microcontroller unit. 11. A wirelessly triggered smart device system as claimed in any one of claims 7 to

10, wherein said sensor comprises an accelerometer or a gyrometer.

12. A wirelessly triggered smart device system as claimed in any one of claims 7 to

11, wherein said circuitry is configured to cause the wireless transmission of an alert signal to said smart device using said Bluetooth protocol if said sensor does not detect movement of the electronic tag within a predetermined period.

13. A wirelessly triggered smart device system as claimed in any one of claims 7 to

12, wherein said circuitry is configured to generate different trigger signals in response to the sensing by said sensor of respective different defined movements of the electronic tag.

14. A method of wirelessly triggering a smart device, said method comprising causing a defined movement of an electronic tag to cause the electronic tag to generate a trigger signal and transmit said trigger signal wirelessly to said smart device using a Bluetooth protocol to cause said smart device to initiate a programmed action in response to receiving the trigger signal.

15. A method of wirelessly triggering a smart device as claimed in claim 14, wherein said trigger signal causes initiation of a music player action.

16. A method of wirelessly triggering a smart device as claimed in claim 14 or 15, wherein causing said defined movement comprises selecting said defined movement from a plurality of defined movements to cause the transmission of a respective trigger signal to said smart device to cause said smart device to initiate a respective programmed action. 17. A method of wirelessly triggering a smart device as claimed in claim 14, 15 or

16, wherein said defined movement comprises at least one of:

a single shake;

a double shake;

a left tilt; and

a right tilt.

18. A method of wirelessly transmitting an alert to a smart device, said method comprising:

programming an electronic tag which electric tag has a sensor to sense movement of the electronic tag and circuitry configured to generate a trigger signal in response to sensing of a defined movement by said sensor and cause said trigger signal to be transmitted wirelessly using a Bluetooth protocol,

wherein said programming comprises configuring the electronic tag to send an alert signal to said smart device if movement of said electronic tag is not sensed within a predetermined time period.

19. A method of wirelessly transmitting an alert to a smart device as claimed in claim 18, further comprising attaching said electronic tag to a container containing a medicine.

20. A method of wirelessly transmitting an alert to a smart device as claimed in claim 19, wherein said container is a pill box.

Description:
Wirelessly Triggering Smart Devices

Field of the Invention

The invention relates to wirelessly triggering smart devices.

Background to the Invention

Smart devices such as smart phones are increasingly being used for multiple applications, which include intruder detection, medical and theft alerts, entertainment and communication. Typically, existing smart phones require multiple inputs to initiate an action. Also the initiation of actions on existing smart phones is often not intuitive for users.

There are systems available for wirelessly triggering smart devices using protocols such as ZigBee® and Wi-Fi®.

Summary of the Invention

The invention provides an electronic tag as specified in claim 1.

The invention also includes a wirelessly trigger smart device system as specified in claim 7.

The invention also includes a method of wirelessly triggering a smart device as specified in claim 14. The invention also includes a method of wirelessly transmitting an alert to a smart device as specified in claim 18.

Brief description of the drawings

In order that the invention may be well understood, some examples thereof will now be described with reference to the drawings in which:

FIG 1 is a schematic illustration of a system comprising a smart device and an electronic tag for wirelessly triggering the smart device; FIG 2 is a schematic illustration of use of the electronic tag as an alerts provider; and

FIG 3 is a schematic illustration of components of the electronic tag. Detailed Description

The described examples disclose electronic tags for wirelessly triggering smart devices using gesture or motion based detection over Bluetooth® low energy (BLE) capabilities. The triggering of the smart device may be substantially instantaneous. The example electronic tags may also allow the end user to remotely and wirelessly trigger smart devices in an intuitive and user friendly way. The example electronic tags may also function as an alerts provider.

FIG 1 illustrates a system 100 comprising a smart device 102 and an electronic tag 104 for wirelessly triggering the smart device. The smart device 102 may be a smart phone. The electronic tag 104 is programmed with gesture or motion detection algorithms for generating trigger signals used to trigger the smart device 102. The electronic tag 104 may be BLE enabled so as to communicate wirelessly with BLE enabled smart devices 102. The smart device 102 is programmed to understand the trigger signals it receives from the electronic tag 104. For example, an end user of the electronic tag 104 may perform multiple gestures or motions such as a single shake, double shake, left tilt or right tilt of the electronic tag that are translated into specific trigger signals that are sent wirelessly with BLE to the smart device 102.

The smart device 102 is programmed to recognize the trigger signals generated by the electronic tag 104 and perform pre-programmed actions in response. The actions may be configurable by the end user or a programmer. For example, the smart device 102 may be programmed for triggering a music player 106 on receiving a trigger signal corresponding to a single shake from the electronic tag 104.

As illustrated with reference to Figure 2, the smart device 102 may also be programmed to receive alerts when a medicine is not taken at a scheduled time. To facilitate this function the electronic tag 104 may be attached to a pill box 108. Using motion detection, the electronic tag 104 is programmed to send alerts to the smart device 102 wirelessly with BLE when the patient has not taken the medicine at a scheduled time. Specifically, the electronic tag 104 is programmed to determine that the medicine has not been taken if a movement of the electronic tag is not sensed within a predetermined timeframe.

Referring to Figure 3, the electronic tag 104 may be a generally rectangular body that is 30 x 30 x 5.8 mm in dimension. The electronic tag 104 may be provided with one or more optical output devices, which may be LEDs 110.

The electronic tag 104 is provided with a power source 114, which may be a coin cell such as a CR2032 capable of delivering 3 V when the electronic tag is in an active mode. The electronic tag 104 is provided with a sensor 116 to sense movements of the electronic tag. The sensor 116 may comprise a multi-axis accelerometer or gyrometer and in some examples may comprise both. The electronic tag 104 is provided with circuitry 118 configured to caused to generate a trigger signal(s) in response to sensing a defined movement(s) of the electronic tag and cause the trigger signal to be transmitted using a Bluetooth protocol. The circuitry 118 may comprise a microcontroller or a processor. The circuitry 118 may comprise a Texas Instruments CC2451 chip with a Bluetooth low energy system enabled on chip.

The Bluetooth protocol used for wirelessly transmitting to the smart device 102 may be the Bluetooth 4.0 low energy standard. It will be understood that the smart device may be a mobile communications device such as a so-called smart phone programmed to operate in conjunction with the electronic tag 104. Alternatively, users may enable a smart device to operate in conjunction with the electronic tag 104 by downloading, or otherwise loading, a suitable 'app' onto the smart device. The app may be configured to enable operation with smart devices equipped with Android™ or Apple® operating platforms.

It will be understood that the disclosed electronic tags allow end users to remotely and wirelessly trigger smart devices in an intuitive and user friendly way wirelessly over BLE.