IP Library › Granted Patent US 9,311,803
Granted Patent B2
US 9,311,803 · App. 13/712,436 · Granted Apr 12, 2016

System and method for managing sensor network uplink and downlink communications

Inventors: Venson M. Shaw (Kirkland, WA); Jin He (Fremont, CA)
Assignee: AT&T Mobility II LLC
G08B21/0277G06Q10/083G06Q20/325G08B21/0241H04Q9/00H04W4/006H04Q2209/10
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Quick Facts
Patent No.
US 9,311,803
App. No.
13/712,436
Granted
Apr 12, 2016
Kind
B2
Abstract

A network includes a supervisory sensor in communication with a wireless network and a non-supervisory sensor in communication with the supervisory sensor, wherein the non-supervisory sensor communicates with the wireless network through the supervisory sensor. The supervisory sensor may be configured to receive downloads from a server communicating through the wireless network and to collect data from the non-supervisory sensor. The supervisory sensor may be configured to transmit the collected data to a server on the wireless network. Moreover, the non-supervisory sensor and the supervisory sensor each have an active state and an inactive state and wherein the supervisory sensor may be in the active state while the non-supervisory sensor is in the inactive state.

Claims (31)

1. A network comprising:

a supervisory sensor in communication, via at least a paging channel, with a wireless network, wherein the supervisory sensor is configured to receive downloads from a server communicating through the wireless network; and

a non-supervisory sensor in communication, via at least the paging channel, with the supervisory sensor, wherein the non-supervisory sensor communicates with the wireless network through the supervisory sensor, wherein the supervisory sensor is configured to receive a command from the server to transfer supervisory functions to the non-supervisory sensor and upon execution of the command, disable a communication interface for the wireless network.

2. The network of claim 1 wherein the supervisory sensor is configured to receive downloads from a server communicating through the wireless network.

3. The network of claim 1 wherein the supervisory sensor is configured to collect data from the non-supervisory sensor.

4. The network of claim 3 wherein the supervisory sensor is configured to transmit the collected data to a server on the wireless network.

5. The network of claim 1 wherein the non-supervisory sensor and the supervisory sensor each have an active state and an inactive state and wherein the supervisory sensor is in the active state while the non-supervisory sensor is in the inactive state.

6. The network of claim 5 wherein the supervisory sensor is configured to change to the inactive state based on one or more criteria.

7. The network of claim 6 wherein the one or more criteria comprises at least one of time of day, location, or network congestion.

8. A method comprising:

establishing a network of sensors; and

appointing a supervisory sensor and a non-supervisory sensor within the network of sensors, wherein the supervisory sensor is configured to communicate, via at least a paging channel, with the non-supervisory sensor and a wireless network, wherein the supervisory sensor is configured to receive a command from a server to transfer supervisory functions to the non-supervisory sensor and upon execution of the command, disable a communication interface for the wireless network.

9. The method of claim 8 further comprising transmitting commands to the supervisory sensor using the wireless network and receiving from the supervisory sensor data collected from the non-supervisory sensor using the wireless network.

10. The method of claim 8 wherein the non-supervisory sensor and the supervisory sensor are configured to have an active state and an inactive state and wherein the supervisory sensor is in the active state while the non-supervisory sensor is in the inactive state.

11. A method comprising:

receiving, at a supervisory sensor, sensor data from a non-supervisory sensor, via at a paging channel; and

transmitting, from the supervisory sensor, via at least the paging channel, the sensor data to a wireless network, wherein the supervisory sensor is configured to receive a command from the server to transfer supervisory functions to the non-supervisory sensor and upon execution of the command, disable a communication interface for the wireless network.

12. The method of claim 11 further comprising receiving commands by the supervisory sensor from a server through the wireless network and sending commands to the non-supervisory sensor based on the received commands.

13. The method of claim 12 further comprising entering into an inactive state during periods of time during which there is no communication with the server.

14. The method of claim 12 further comprising cycling into an inactive state and an active state based on one of a criteria.

15. The method of claim 14 wherein the criteria is one of time of day, network congestion and fault detection.

16. The method of claim 11 further comprising changing the non-supervisory sensor as a second supervisory sensor and changing the supervisory sensor into a second non-supervisory sensor.

17. A supervisory sensor comprising:

a sensor component;

a first communication interface configured for communicating with a non-supervisory sensor, via at least paging channel; and

a second communication interface configured for communicating wirelessly, via at least the paging channel, with a server over a wireless network; wherein the supervisory sensor is configured to:

obtain first data from the sensor component;

obtain second data from the non-supervisory sensor; and

transmit the first data and the second data to the server,

wherein the supervisory sensor is configured to receive a command from the server to transfer supervisory functions to the non-supervisory sensor and upon execution of the command, disable the second communication interface for the wireless network.

18. The supervisory sensor of claim 17 , wherein the supervisory sensor is further configured to cycle between an active state and an inactive state.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2012
From: SHAW, VENSON M.; HE, JIN
To: AT&T INTELLECTUAL PROPERTY I, LP
Reel/Frame 029455/0755 →
Continuity (1)
Related Publication 20140159913A1 · Jun 12, 2014