IP Library › Granted Patent US 9,037,194
Granted Patent B2
US 9,037,194 · App. 14/504,126 · Granted May 19, 2015

Method of using a ranging system to determine the location of a node relative to a beacon

Inventor: Glen Var Rosenbaum (Gilbert, AZ)
Assignee: Corvus Technologies Corp
H04W4/026
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Quick Facts
Patent No.
US 9,037,194
App. No.
14/504,126
Granted
May 19, 2015
Kind
B2
Abstract

A method of using a ranging system for communicating between an end user node and controller to determine the location of the end user node relative to a beacon. The controller transmits an inquiry message to the end user node with a minimum received signal strength indicator (RSSI) message that includes a threshold for transmitting a reply message. When the measured RSSI of the inquiry message exceeds the RSSI threshold, the controller receives a reply message from the end user node, including the measured RSSI.

Claims (20)

1. A method for communicating between an end user node and a control station controller used in determining a location of the end user node relative to a beacon, comprising:

transmitting an inquiry message from the controller to the end user node with minimum received signal strength indicator (RSSI) message, wherein the minimum RSSI message includes a RSSI threshold for transmitting a reply message from the end user node;

receiving a reply message at the controller from the end user node including a measured RSSI of the inquiry message at the end user node when the measured RSSI of the inquiry message exceeds the RSSI threshold;

incrementing to a next segment in a plurality of segments of a scan after a maximum segment time, wherein each segment of the plurality of segments uses a different radio frequency (RF) phased-array narrow beam for transmitting the inquiry message and receiving the reply message, and the maximum segment time provides a specified dwell time interval for transmitting the inquiry message and receiving the reply message; and

transmitting the inquiry message and receiving the reply message for the next segment.

2. The method of claim 1 , further comprising after receiving the reply message:

measuring the RSSI of the reply message; and

determining at least one of an angle-of-arrival (AOA) and a time-of-flight (TOF) of the reply message or the inquiry message fed back in the reply message.

3. The method of claim 2 , further comprising after receiving the reply message:

determining at least one of an AOA and a TOF of the end user node relative to the beacon from a greatest RSSI strength of a plurality of reply messages, wherein at least one of a RSSI of the reply message and a RSSI of inquiry message fed back in the reply messages has a greatest RSSI strength relative to other reply messages or inquiry messages.

4. The method of claim 2 , further comprising after receiving the reply message:

determining a shortest TOF between the end user node and the beacon from a plurality of reply messages, wherein the shortest TOF is at least one of a TOF of the reply messages and a TOF of the inquiry messages relative to other reply messages or inquiry messages.

5. The method of claim 1 , wherein transmitting the inquiry message and receiving the reply message uses a radio frequency (RF) phased-array narrow beam via an electronic scanned array (ESA) antenna of a beacon.

6. The method of claim 1 , wherein communicating between the end user node and the control station controller uses a modified ZigBee protocol for signal transmissions, wherein the modified ZigBee protocol reduces scanning time by reducing a number of messages or by reducing a dwell time in a handshaking protocol via messaging including received signal strength indicator (RSSI) information.

7. At least one non-transitory machine readable storage medium comprising a plurality of instructions adapted to be executed to implement the method according to claim 1 .

8. An end user node for a ranging system, comprising:

a receiving module configured to receive an inquiry message from a controller with minimum received signal strength indicator (RSSI) message, wherein the minimum RSSI message includes a RSSI threshold for transmitting a reply message and wherein the receiving module configured to receive the inquiry message which is incremented to a next segment in a plurality of segments of a scan after a maximum segment time, wherein each segment of the plurality of segments uses a different radio frequency (RF) phased-array narrow beam for transmitting the inquiry message and receiving the reply message, and the maximum segment time provides a specified dwell time interval for transmitting the inquiry message and receiving the reply message;

a measurement module configured to measure a RSSI of the inquiry message; and

a transmitting module configured to transmit a reply message to the controller including the measured RSSI of the inquiry message at the end user node when the measured RSSI of the inquiry message exceeds the RSSI threshold.

9. The end user node of claim 8 , wherein the end user node uses a ZigBee protocol for signal transmissions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2015
From: ROSENBAUM, GLEN VAR
To: CORVUS TECHNOLOGIES CORP
Reel/Frame 035227/0300 →
Continuity (6)
Division 13489298 · Jun 5, 2012
Continuation In Part 13430525 · Mar 26, 2012
Continuation PCTUS2012026666 · Feb 24, 2012
Provisional Application 61446470 · Feb 24, 2011
Provisional Application 61446474 · Feb 24, 2011
Related Publication 20150057030A1 · Feb 26, 2015