IP Library Granted Patent US 9,337,373
Granted Patent B2
US 9,337,373 · App. 13/195,537 · Granted May 10, 2016

Light-guide solar module, method of fabrication thereof, and panel made therefrom

Inventors: John Paul Morgan (Toronto, CA); Philip M. Chang (Toronto, CA); Stefan Myrskog (Maple, CA); Nigel Morris (Toronto, CA)
Assignee: MORGAN SOLAR INC.
H01L31/18H01L31/0547H02S20/00Y02E10/52
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Quick Facts
Patent No.
US 9,337,373
App. No.
13/195,537
Granted
May 10, 2016
Kind
B2
Abstract

A photovoltaic light guide solar concentration apparatus has a deflecting layer, a light-guide layer optically coupled to the deflecting layer, a secondary optic and a photovoltaic cell. The photovoltaic concentration apparatus has a central optical axis that, in operation, is parallel to incident sunlight. A deflecting layer includes a plurality of focusing elements symmetrically arranged with respect to the central optical axis. The light-guide layer is optically coupled to the plurality of focusing elements of the deflecting layer. The light-guide layer has a reflective surface and a plurality of opposite facets symmetrically arranged with respect to the central axis and focused sunlight from the deflection layer enters the light-guide layer and is directed and trapped by the reflective surface and the opposite facets and guided inside the light-guide layer towards an exit aperture through total internal reflections. A secondary optic is coaxially located with respect to the central optical axis and is coupled to the light guide layer the secondary optic that has at least one reflective surface. The secondary optic redirects the light towards the exit aperture. A photovoltaic cell is located at the exit aperture and on the central axis to receive sunlight from the secondary optic within an acceptance angle relative to the central axis.

Claims (32)

1. A photovoltaic light guide solar concentration apparatus having a central optical axis parallel in operation to incident sunlight, the photovoltaic light guide solar concentration apparatus comprising:

a deflecting layer exposable to the incident sunlight, the deflecting layer including a plurality of focusing elements, the plurality of focusing elements being rotationally symmetrically arranged with respect to the central optical axis;

a light-guide layer optically coupled to the plurality of focusing elements, the light-guide layer including a reflective surface and a plurality of facets rotationally symmetrically arranged with respect to the central axis and disposed opposite to the reflective surface, focused sunlight from the deflecting layer entering the light-guide layer being directed and trapped by the reflective surface and the facets opposite to the reflective surface and guided inside the light-guide layer towards an exit aperture through total internal reflections;

a secondary optic coaxially located with respect to the central optical axis and coupled to the light-guide layer, the secondary optic having at least one reflective surface, the secondary optic for redirecting the light towards the exit aperture;

a photovoltaic cell located at the exit aperture and on the central axis for receiving sunlight from the secondary optic.

2. A photovoltaic light guide solar concentration apparatus according to claim 1 wherein the reflective surface of the secondary optic is a totally reflective surface.

3. A photovoltaic light guide solar concentration apparatus according to claim 1 wherein the reflective surface of the secondary optic is a parabola.

4. A photovoltaic light guide solar concentration apparatus according to claim 1 wherein the reflective surface of the secondary optic is part of a compound parabolic concentrator.

5. A photovoltaic light guide solar concentration apparatus according to claim 1 wherein the reflective surface of the secondary optic is a freeform surface.

6. A photovoltaic light guide solar concentration apparatus according to claim 1 wherein the secondary optic is a solid component made of a sun light optically transmissive material and includes an entrance facet.

7. A photovoltaic light guide solar concentration apparatus according to claim 6 wherein the secondary optic includes a non-circular exit facet.

8. A photovoltaic light guide solar concentration apparatus according to claim 6 wherein an optical coupling element is positioned between the light guide layer and the secondary optic.

9. A photovoltaic light guide solar concentration apparatus according to claim 8 wherein the optical coupling element includes a latch that positions the optical coupling element relative to one of the secondary optic and the light guide layer.

10. A photovoltaic light guide solar concentration apparatus according to claim 1 further comprising a tray that secures one of the deflecting layer and the light-guide layer.

11. A photovoltaic light guide solar concentration apparatus according to claim 10 wherein the tray retains the photovoltaic cell.

12. A photovoltaic light guide solar concentration apparatus according to claim 10 wherein the tray includes supporting components to hold the secondary optic in place.

13. A photovoltaic light guide solar concentration apparatus according to claim 1 wherein one of the deflecting layer and light guide layer includes an alignment feature.

14. A photovoltaic light guide solar concentration apparatus according to claim 1 wherein one of the deflecting layer and light guide layer includes a clamping feature to secure the two layers.

15. A photovoltaic light guide solar concentration apparatus having a central optical axis parallel in operation to incident sunlight, the photovoltaic light guide solar concentration apparatus comprising:

a deflecting layer exposable to the incident sunlight, the deflecting layer including a plurality of focusing elements, the plurality of focusing elements being rotationally symmetrically arranged with respect to the central optical axis;

a light-guide layer optically coupled to the plurality of focusing elements, the light-guide layer including a reflective surface and a plurality of facets rotationally symmetrically arranged with respect to the central axis and disposed opposite to the reflective surface, focused sunlight from the deflecting layer entering the light-guide layer being directed and trapped by the reflective surface and the facets opposite to the reflective surface and guided inside the light-guide layer towards an exit aperture through total internal reflections;

a secondary optic coaxially located with respect to the central optical axis and coupled to the light guide layer, the secondary optic having at least one reflective surface, the secondary optic for redirecting the light towards the exit aperture;

a photovoltaic cell located at the exit aperture and on the central axis for receiving sunlight from the secondary optic within an acceptance angle relative to the central axis via an interface.

16. A photovoltaic light guide solar concentration apparatus having a central optical axis parallel in operation to incident sunlight, the photovoltaic light guide solar concentration apparatus comprising:

a deflecting layer exposable to the incident sunlight, the deflecting layer including a plurality of focusing elements, the plurality of focusing elements being rotationally symmetrically arranged with respect to the central optical axis;

a light-guide layer optically coupled to the plurality of focusing elements, the light-guide layer including a reflective surface and a plurality of facets rotationally symmetrically arranged with respect to the central axis and disposed opposite to the reflective surface, focused sunlight from the deflection layer entering the light-guide layer being directed and trapped by the reflective surface and the facets opposite to the reflective surface and guided inside the light-guide layer towards an exit aperture through total internal reflections;

a secondary optic coaxially located with respect to the central optical axis and coupled to the light guide layer, the secondary optic having at least one reflective surface the secondary optic to redirect the light towards the exit aperture;

a photovoltaic cell located at the exit aperture and on the central axis to receive sunlight from the secondary optic within an acceptance angle relative to the central axis via an interface;

a tray that secures one of the deflecting layer and the light-guide layer.

17. A photovoltaic light guide solar concentration apparatus according to claim 1 further comprising a heat sink thermally coupled to the photovoltaic cell to receive heat generated by the concentrated light projected via the secondary optic onto the photovoltaic cell.

18. A photovoltaic light guide solar concentration apparatus according to claim 15 further comprising a heat sink thermally coupled to the photovoltaic cell to receive heat generated by the concentrated light projected via the secondary optic onto the photovoltaic cell.

19. A photovoltaic light guide solar concentration apparatus according to claim 16 further comprising a heat sink thermally coupled to the photovoltaic cell to receive heat generated by the concentrated light projected via the secondary optic onto the photovoltaic cell.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2022
From: MORGAN SOLAR INC.
To: MORGAN INNOVATION INC.
Reel/Frame 058864/0960 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2011
From: MORGAN, JOHN PAUL; MYRSKOG, STEFAN; CHANG, PHILIP M.; MORRIS, NIGEL
To: MORGAN SOLAR INC.
Reel/Frame 027238/0900 →
Priority Claims (1)
WO PCT/CA2010/001181 · Jul 30, 2010 · international
Continuity (8)
Continuation In Part 12705415 · Feb 12, 2010
Continuation In Part 12113705 · May 1, 2008
Provisional Application 60951775 · Jul 25, 2007
Provisional Application 60942745 · Jun 8, 2007
Provisional Application 60915207 · May 1, 2007
Provisional Application 61151006 · Feb 9, 2009
Provisional Application 61229542 · Jul 29, 2009
Related Publication 20120055552A1 · Mar 8, 2012