IP Library Granted Patent US 11,177,879
Granted Patent B2
US 11,177,879 · App. 17/050,711 · Granted Nov 16, 2021

Systems and methods for free space optical communication using active beam steering

Inventors: Maurice Herman Johan Draaijer (Ittervoort, NL); Jan Ekkel (Eindhoven, NL); Ruben Rajagopalan (Neuss, DE); Harry Broers ('S-Hertogenbosch, NL)
Assignee: SIGNIFY HOLDING B.V.
H04B10/1121G02B27/144H04B10/118H04B10/1129G02B26/0833H04B10/516
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Quick Facts
Patent No.
US 11,177,879
App. No.
17/050,711
Granted
Nov 16, 2021
Kind
B2
Abstract

A system and method for performing free space optical communication with a plurality of streetlamp assemblies. The method includes transmitting a light beam from a first free space optical (FSO) unit of a first streetlamp assembly to a second FSO unit of a second streetlamp assembly along a transmission path. A transmission error is detected while transmitting the light beam along the transmission path. A location of one or more smart minors is obtained. An alternate transmission path is determined from the first FSO unit to the second FSO unit or a third FSO unit. The alternate transmission path includes a reflection of the light beam from the one or more smart minors. The first FSO unit is oriented with respect to the alternate transmission path. The light beam is transmitted from the first FSO unit along the alternate transmission path.

Claims (28)

1. A method for performing free space optical communication with a plurality of streetlamp assemblies, comprising:

transmitting a light beam from a first free space optical (FSO) unit of a first streetlamp assembly to a second FSO unit of a second streetlamp assembly along a transmission path;

detecting a transmission error while transmitting the light beam along the transmission path;

obtaining a location of one or more smart mirrors, wherein the smart mirrors include a semi-reflective surface arranged to permit a portion of incident light to transmit through the surface to an optical sensor assembly while reflecting the remaining portion of the incident light, and are configured to communicate a location of the incident light hitting its reflective surface, and include actuators such that an orientation of an FSO unit or the smart mirror may be adjusted;

determining an alternate transmission path from the first FSO unit to the second FSO unit or a third FSO unit, the alternate transmission path including a reflection of the light beam from the one or more smart mirrors;

orienting the first FSO unit with respect to the alternate transmission path; and

transmitting the light beam from the first FSO unit along the alternate transmission path.

2. The method of claim 1 , wherein the transmission error relates to an obstruction hindering transmission of the light beam or to a link budget quality for the light beam along the transmission path to be determined as below a pre-set threshold for the link budget quality.

3. The method of claim 2 , wherein the obstruction includes a tree, a building, snow, rain, fog, smog, dust, or a combination including at least one of the foregoing.

4. The method of claim 1 , further comprising sensing an incident light location of the light beam on the smart mirror with an optical sensor assembly.

5. The method of claim 4 , wherein the sensing includes transmitting a transmitted portion of an incident portion of the light beam through a reflective surface of the smart mirror, and receiving the transmitted portion with the optical sensor assembly.

6. The method of claim 4 , further comprising communicating the incident light location to the first FSO unit.

7. The method of claim 6 , further comprising recalculating the alternate transmission path and adjusting an orientation of the first FSO unit in accordance with the recalculated alternate transmission path.

8. The method of claim 6 , further comprising adjusting one or more operating parameters of the light beam with the first FSO unit.

9. The method of claim 4 , further comprising reorienting the smart mirror to change a direction of a reflected portion of the light beam from the smart mirror.

10. The method of claim 9 , wherein the reorienting includes driving one or more actuators to move or rotate the smart mirror in one or more directions or reconfigure a reflective surface of the smart mirror.

11. The method of claim 1 , wherein the one or more smart mirrors comprises a plurality of the smart mirrors and the alternate transmission path includes reflections from each of the smart mirrors.

12. A streetlamp assembly comprising:

a support;

a light fixture mounted to the support;

a free space optical (FSO) unit mounted to the support, the FSO unit including an optical transmitter configured to generate a light beam;

an actuator configured to set an orientation of the FSO unit with respect to the support; and

a controller configured to:

detect a transmission error in transmission of the light beam to another FSO unit along a transmission path;

obtain a location of one or more smart mirrors; and

determine an alternate transmission path that includes a reflection of the light beam from the one or more smart mirrors,

wherein the one or more smart mirrors includes an optical sensor array configured to detect an incident light location of the light beam on the smart mirror, is configured to communicate the incident light location to one or more of streetlamp assemblies, to reorient itself to change a direction of a reflected portion of the light beam off of the smart mirror, or a combination including at least one of the foregoing.

13. A free space optical communication system comprising a plurality of streetlamp assemblies according to claim 12 and the one or more smart mirrors.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2020
From: DRAAIJER, MAURICE HERMAN JOHAN; EKKEL, JAN; RAJAGOPALAN, RUBEN; BROERS, HARRY
To: PHILIPS LIGHTING HOLDING B.V.
Reel/Frame 054168/0262 →
CHANGE OF NAME Recorded Oct 26, 2020
From: PHILIPS LIGHTING HOLDING B.V.
To: SIGNIFY HOLDING B.V.
Reel/Frame 054209/0675 →
Priority Claims (1)
EP 18168870 · Apr 24, 2018 · regional
Continuity (1)
Related Publication 20210075509A1 · Mar 11, 2021