IP Library Granted Patent US 10,321,286
Granted Patent B2
US 10,321,286 · App. 16/167,484 · Granted Jun 11, 2019

Methods and systems for scheduling the transmission of localization signals and operating self-localizing apparatus

Inventors: Luca Gherardi (Zurich, CH); Raffaello D'Andrea (Wollerau, CH); Markus Hehn (Zurich, CH); Markus Waibel (Zurich, CH)
Assignee: Verity Studios AG
H04W4/30G01S1/024G01S1/042G01S1/20G01S5/0284G01S5/0289G01S5/14G05D1/00G05D1/028G05D1/102H04B1/69H04W4/021H04W4/026H04W4/027H04W84/18G05D2201/0216
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Quick Facts
Patent No.
US 10,321,286
App. No.
16/167,484
Granted
Jun 11, 2019
Kind
B2
Abstract

Localization systems and methods for transmitting timestampable localization signals from anchors according to one or more transmission schedules. The transmission schedules may be generated and updated to achieve desired positioning performance. For example, one or more anchors may transmit localization signals at a different rate than other anchors, the anchor transmission order can be changed, and the signals can partially overlap. In addition, different transmission parameters may be used to transmit two localization signals at the same time without interference. A self-localizing apparatus is able to receive the localization signals and determine its position. The self-localizing apparatus may have a configurable receiver that can select to receive one of multiple available localization signals. The self-localizing apparatuses may have a pair of receivers able to receive two localization signals at the same time. A bridge anchor may be provided to enable a self-localizing apparatus to seamlessly transition between two localization systems.

Claims (41)

1. A localization system, comprising:

a plurality of positioning anchors configured to wirelessly transmit localization signals during time slots of a transmission schedule, wherein:

each localization signal comprises a payload; and

the payload for each localization signal identifies at least one positioning anchor of the plurality of positioning anchors configured to transmit a localization signal during at least one future time slot; and

a self-localizing apparatus comprising a receiver, wherein the self-localizing apparatus is configured to:

receive at least some of the localization signals;

extract the payload of the received localization signals;

determine, based on the extracted payload of the received localization signals, which localization signals to receive for determining positioning information of the self-localizing apparatus;

configure the receiver based on the determined localization signals;

receive, using the configured receiver, the determined localization signals; and

determine the positioning information of the self-localizing apparatus based on the received determined localization signals.

2. The localization system of claim 1 , wherein the localization signals comprise a first subgroup and a second subgroup, wherein the first subgroup and the second subgroup comprise at least one different transmission characteristic.

3. The localization system of claim 2 , wherein the at least one different transmission characteristic comprises at least one of transmission center frequency, transmission frequency bandwidth, preamble code, and preamble modulation scheme.

4. The localization system of claim 2 , wherein a localization signal from the first subgroup and a localization signal from the second subgroup are both scheduled for transmission during the same time slot of the transmission schedule.

5. The localization system of claim 1 , wherein the self-localizing apparatus is configured to determine which localization signals to receive based on status information.

6. The localization system of claim 5 , wherein the status information comprises current position of the self-localizing apparatus.

7. The localization system of claim 5 , wherein the status information comprises variance information associated with a localization estimator of the self-localizing apparatus.

8. The localization system of claim 7 , wherein the self-localizing apparatus is configured to determine which localization signals to receive to minimize variance associated with the localization estimator.

9. The localization system of claim 1 , wherein the payload for each localization signal identifies two positioning anchors of the plurality of positioning anchors configured to transmit localization signals during the same future time slot.

10. The localization system of claim 1 , wherein the payload for each localization signal identifies at least one positioning anchor of the plurality of positioning anchors configured to transmit a localization signal during each of at least two future time slots.

11. A localization method comprising:

wirelessly transmitting, using a plurality of positioning anchors, localization signals during time slots of a transmission schedule, wherein

each localization signal comprises a payload; and

the payload for each localization signal identifies at least one positioning anchor of the plurality of positioning anchors configured to transmit a localization signal during at least one future time slot;

receiving, using a self-localizing apparatus, at least some of the localization signals;

extracting, using the self-localizing apparatus, the payload of the received localization signals;

determining, using the self-localizing apparatus, which localization signals to receive for determining positioning information of the self-localizing apparatus based on the extracted payload of the received localization signals;

configuring the receiver of the self-localizing apparatus based on the determined localization signals;

receiving, using the configured receiver, the determined localization signals; and

determining, using the self-localizing apparatus, the positioning information.

12. The method of claim 11 , wherein the localization signals comprise a first subgroup and a second subgroup, wherein the first subgroup and the second subgroup comprise at least one different transmission characteristic.

13. The method of claim 12 , wherein the at least one different transmission characteristic comprises at least one of transmission center frequency, transmission frequency bandwidth, preamble code, and preamble modulation scheme.

14. The method of claim 12 , wherein a localization signal from the first subgroup and a localization signal from the second subgroup are both scheduled for transmission during the same time slot of the transmission schedule.

15. The method of claim 11 , further comprising:

determining, using the self-localizing apparatus, which localization signals to receive based on status information.

16. The method of claim 15 , wherein the status information comprises current position of the self-localizing apparatus.

17. The method of claim 15 , wherein the status information comprises variance information associated with a localization estimator of the self-localizing apparatus.

18. The method of claim 17 , further comprising:

determining, using the self-localizing apparatus, which localization signals to receive to minimize variance associated with the localization estimator.

19. The method of claim 11 , wherein the payload for each localization signal identifies two positioning anchors of the plurality of positioning anchors configured to transmit localization signals during the same future time slot.

20. The method of claim 11 , wherein the payload for each localization signal identifies at least one positioning anchor of the plurality of positioning anchors configured to transmit a localization signal during each of at least two future time slots.

Assignments (2)
CHANGE OF NAME Recorded May 5, 2023
From: VERITY STUDIOS AG
To: VERITY AG
Reel/Frame 063549/0841 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2019
From: GHERARDI, LUCA; D'ANDREA, RAFFAELLO; HEHN, MARKUS; WAIBEL, MARKUS
To: VERITY STUDIOS AG
Reel/Frame 048984/0570 →
Continuity (4)
Continuation 15168122 · May 30, 2016
Continuation In Part 15063104 · Mar 7, 2016
Provisional Application 62168704 · May 29, 2015
Related Publication 20190058978A1 · Feb 21, 2019