IP Library Granted Patent US 9,462,734
Granted Patent B2
US 9,462,734 · App. 13/091,960 · Granted Oct 4, 2016

Rail systems and methods for installation and operation of photovoltaic arrays

Inventors: Anders Swahn (Tiburon, CA); Wolfgang Oels (Richmond, CA)
Assignee: Alion Energy, Inc.
H05K13/00B21C23/00B25J5/007F24J2/5237F24J2/5239H02S20/00H02S20/10H02S40/36F24J2002/4687F24J2002/5281Y02E10/47Y02E10/50Y10T29/49002
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,462,734
App. No.
13/091,960
Granted
Oct 4, 2016
Kind
B2
Abstract

Rail system and method for a photovoltaic array. The system includes at least one modular rail in a first direction. The modular rail includes a first vehicle support surface along the first direction and a first mounting surface along the first direction. The first vehicle support surface is configured to support at least a first vehicle moving in the first direction, and the first mounting surface is configured to support one or more photovoltaic modules mounted on the first mounting surface.

Claims (79)

1. A rail system for a photovoltaic array, the rail system comprising:

a first vehicle comprising at least a first wheel, continuous track, or caterpillar tread and a second wheel, continuous track, or caterpillar tread; and

a plurality of modular rails each along a first direction, each of the modular rails including a unitary, elongated piece of extruded concrete disposed on graded ground of an installation site, the graded ground having an uneven surface substantially filled by the unitary, elongated piece of extruded concrete;

wherein each of the unitary, elongated pieces of extruded concrete is spaced apart from each other of the unitary, elongated pieces of extruded concrete by a respective gap;

wherein each of the unitary, elongated pieces of extruded concrete includes a first substantially flat vehicle support surface along the first direction, the first substantially flat vehicle support surface being substantially parallel to the ground and unobstructedly receiving the first wheel, continuous track, or caterpillar tread of the first vehicle;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second substantially flat vehicle support surface along the first direction, the second substantially flat vehicle support surface being substantially parallel to the ground and unobstructedly receiving the second wheel, continuous track, or caterpillar tread of the first vehicle;

wherein each of the unitary, elongated pieces of extruded concrete further includes a first raised surface along the first direction, disposed between the first vehicle support surface and the second vehicle support surface and raised relative to the first vehicle support surface and the second vehicle support surface;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second raised surface along the first direction, disposed between the first vehicle support surface and the second vehicle support surface and raised relative to the first vehicle support surface and the second vehicle support surface;

wherein each of the unitary, elongated pieces of extruded concrete further includes a first substantially flat plenum disposed between the first raised surface and the second raised surface, the first raised surface and the second raised surface being raised relative to the first substantially flat plenum;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second substantially flat plenum disposed between the first raised surface and the second raised surface, the first raised surface and the second raised surface being raised relative to the second substantially flat plenum; and

wherein each of the unitary, elongated pieces of extruded concrete further includes a third raised surface raised relative to the first vehicle support surface, the second vehicle support surface, the first substantially flat plenum, and the second substantially flat plenum, the third raised surface being disposed between the first substantially flat plenum and the second substantially flat plenum;

wherein:

each of the first substantially flat vehicle support surface and the second substantially flat vehicle support surface of at least one of the unitary, elongated pieces of extruded concrete supports the first vehicle moving along the first direction;

each of the first raised surface, the second raised surface, and the third raised surface of each of the unitary, elongated pieces of extruded concrete supports one or more photovoltaic modules; and

at least one plenum of the first plenum and the and second plenum of each of the unitary, elongated pieces of extruded concrete holds one or more cables along the first direction.

2. The rail system of claim 1 wherein each of the modular rails further includes a cover for the at least one plenum.

3. The rail system of claim 1 wherein each of the unitary, elongated pieces of extruded concrete further includes a base surface opposite to the first raised surface, the first raised surface being tilted relative to the base surface.

4. The rail system of claim 1 wherein:

each of the unitary, elongated pieces of extruded concrete of the modular rail further includes a base surface opposite to the first raised surface;

wherein the base surface forms one or more channels at one or more intervals along that unitary, elongated piece of extruded concrete of the modular rail, the one or more channels being substantially perpendicular to the first direction.

5. The rail system of claim 1 wherein the second raised surface of each of the unitary, elongated pieces of extruded concrete is substantially coplanar with the first raised surface of that unitary, elongated piece of extruded concrete.

6. The rail system of claim 1 wherein each of the unitary, elongated pieces of extruded concrete further includes one or more indicia at one or more intervals respectively along that unitary, elongated piece of extruded concrete, the one or more indicia being configured to identify one or more locations in the rail system.

7. The rail system of claim 1 , wherein a first photovoltaic module of the one or more photovoltaic modules is affixed to the first raised surface of a corresponding one of the unitary, elongated pieces of extruded concrete with at least one or more mechanical connectors.

8. The rail system of claim 1 , wherein a first photovoltaic module of the one or more photovoltaic modules is affixed to the first raised surface of a corresponding one of the unitary, elongated pieces of extruded concrete with at least one or more adhesive materials.

9. The rail system of claim 8 wherein the first photovoltaic module is affixed to the first raised surface of the corresponding one of the unitary, elongated pieces of extruded concrete using at least a flexible spacer with at least the one or more adhesive materials.

10. The rail system of claim 8 , and further comprising a second photovoltaic module coupled to the first photovoltaic module through at least an interconnector.

11. The rail system of claim 10 wherein the interconnector is selected from a group consisting of a rigid in-line slide-on interconnector, a flexible slide-in interconnector, a flexible ribbon interconnector, and an in-line slide-in edge interconnector.

12. The rail system of claim 1 , wherein the first vehicle is configured to perform one or more first tasks.

13. The rail system of claim 12 wherein each of the one or more first tasks is associated with at least installation, operation, logistics, or servicing of a photovoltaic array.

14. The rail system of claim 12 wherein the first vehicle is further configured to perform the one or more first tasks automatically.

15. The rail system of claim 12 wherein the first vehicle includes at least a power supply selected from a group consisting of a battery, a photovoltaic module, and a combustion engine.

16. The rail system of claim 12 wherein the first vehicle includes at least a sensor configured to determine a location of the first vehicle.

17. The rail system of claim 16 wherein:

the at least one of the unitary, elongated pieces of extruded concrete includes one or more indicia at one or more intervals respectively along that unitary, elongated piece of extruded concrete, the one or more indicia being configured to identify one or more locations in the rail system; and

the sensor is further configured to determine the location using the one or more indicia.

18. The rail system of claim 12 wherein the first vehicle includes at least a communication system to communicate with a second vehicle, the second vehicle being configured to perform one or more second tasks.

19. The rail system of claim 18 wherein the second vehicle is further configured to transport the first vehicle.

20. The rail system of claim 1 , and further comprising:

a second vehicle; and

at least one index rail along a second direction, the index rail including a third vehicle support surface along the second direction;

wherein the third vehicle support surface supports at least the second vehicle moving along the second direction.

21. The rail system of claim 20 wherein the third vehicle support surface is further configured to support at least the first vehicle moving along the second direction.

22. The rail system of claim 20 wherein the index rail further includes a plenum along the second direction, the plenum being configured to hold one or more cables.

23. The rail system of claim 22 wherein the index rail further includes a cover for the plenum.

24. The rail system of claim 20 wherein the index rail further includes one or more notches at one or more intervals respectively along the index rail, the one or more notches being substantially perpendicular to the second direction.

25. The rail system of claim 20 wherein the index rail further includes a base surface forming one or more channels at one or more intervals along the index rail, the one or more channels being substantially perpendicular to the second direction.

26. The rail system of claim 20 wherein the first direction and the second direction are substantially perpendicular.

27. The rail system of claim 1 wherein each of the modular rails further comprises reinforcing mesh that is filled with the concrete.

28. The rail system of claim 1 wherein the first raised surface of each of the unitary, elongated pieces of extruded concrete is configured to support a plurality of photovoltaic modules of the one or more photovoltaic modules mounted adjacent to one another along the first raised surface of that unitary, elongated piece of extruded concrete, the first substantially flat vehicle support surface of the at least the one of the unitary, elongated pieces of extruded concrete supporting at least the first vehicle moving sequentially relative to each photovoltaic module of the plurality of photovoltaic modules mounted along the first raised surface of that unitary, elongated piece of extruded concrete.

29. The rail system of claim 1 wherein the first raised surface of each unitary, elongated piece of extruded concrete is tilted relative to the first substantially flat vehicle support surface of that unitary, elongated piece of extruded concrete.

30. A rail system for a photovoltaic array, the rail system comprising:

a first vehicle comprising at least a first wheel, continuous track, or caterpillar tread and a second wheel, continuous track, or caterpillar tread; and

a plurality of modular each along a first direction, each of the modular rails including a unitary, elongated piece of extruded concrete disposed on graded ground of an installation site, the graded ground having an uneven surface substantially filled by the unitary, elongated piece of extruded concrete;

wherein each of the unitary, elongated pieces of extruded concrete is spaced apart from each other of the unitary, elongated pieces of extruded concrete by a respective gap;

wherein each of the unitary, elongated pieces of extruded concrete includes a first substantially flat vehicle support surface along the first direction, the first substantially flat vehicle support surface being substantially parallel to the ground and unobstructedly receiving the first wheel, continuous track, or caterpillar tread of the first vehicle;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second substantially flat vehicle support surface along the first direction, the second substantially flat vehicle support surface being substantially parallel to the ground and unobstructedly receiving the second wheel, continuous track, or caterpillar tread of the first vehicle;

wherein each of the unitary, elongated pieces of extruded concrete further includes a first raised surface along the first direction, disposed between the first vehicle support surface and the second vehicle support surface and raised relative to the first vehicle support surface and the second vehicle support surface;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second raised surface along the first direction, disposed between the first vehicle support surface and the second vehicle support surface and raised relative to the first vehicle support surface and the second vehicle support surface;

wherein each of the unitary, elongated pieces of extruded concrete further includes a first substantially flat plenum disposed between the first raised surface and the second raised surface, the first raised surface and the second raised surface being raised relative to the first substantially flat plenum;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second substantially flat plenum disposed between the first raised surface and the second raised surface, the first raised surface and the second raised surface being raised relative to the second substantially flat plenum; and

wherein each of the unitary, elongated pieces of extruded concrete further includes a third raised surface raised relative to the first vehicle support surface, the second vehicle support surface, the first substantially flat plenum, and the second substantially flat plenum, the third raised surface being disposed between the first substantially flat plenum and the second substantially flat plenum;

wherein:

each of the first substantially flat vehicle support surface and the second substantially flat vehicle support surface of at least one of the unitary, elongated pieces of extruded concrete supports the first vehicle moving along the first direction;

one or more photovoltaic modules are disposed over each of the first raised surface, the second raised surface, and the third raised surface of each of the unitary, elongated pieces of extruded concrete; and

at least one plenum of the first plenum and the and second plenum of each of the unitary, elongated pieces of extruded concrete holds one or more cables along the first direction.

31. A rail system for a photovoltaic array, the rail system comprising:

a first vehicle comprising at least a first wheel, continuous track, or caterpillar tread and a second wheel, continuous track, or caterpillar tread; and

a plurality of modular rails each along a first direction, each of the modular rails including a unitary, elongated piece of extruded concrete disposed on graded ground of an installation site, the graded ground having an uneven surface substantially filled by the unitary, elongated piece of extruded concrete;

wherein each of the unitary, elongated pieces of extruded concrete is spaced apart from each other of the unitary, elongated pieces of extruded concrete by a respective gap;

wherein each of the unitary, elongated pieces of extruded concrete includes a first substantially flat vehicle support surface along the first direction, the first substantially flat vehicle support surface being substantially parallel to the ground and unobstructedly receiving the first wheel, continuous track, or caterpillar tread of the first vehicle;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second substantially flat vehicle support surface along the first direction, the second substantially flat vehicle support surface being substantially parallel to the ground and unobstructedly receiving the second wheel, continuous track, or caterpillar tread of the first vehicle;

wherein each of the unitary, elongated pieces of extruded concrete further includes a first raised surface along the first direction, disposed between the first vehicle support surface and the second vehicle support surface and raised relative to the first vehicle support surface and the second vehicle support surface;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second raised surface along the first direction, disposed between the first vehicle support surface and the second vehicle support surface and raised relative to the first vehicle support surface and the second vehicle support surface;

wherein each of the unitary, elongated pieces of extruded concrete further includes a first substantially flat plenum disposed between the first raised surface and the second raised surface, the first raised surface and the second raised surface being raised relative to the first substantially flat plenum;

wherein each of the unitary, elongated pieces of extruded concrete further includes a second substantially flat plenum disposed between the first raised surface and the second raised surface, the first raised surface and the second raised surface being raised relative to the second substantially flat plenum; and

wherein each of the unitary, elongated pieces of extruded concrete further includes a third raised surface raised relative to the first vehicle support surface, the second vehicle support surface, the first substantially flat plenum, and the second substantially flat plenum, the third raised surface being disposed between the first substantially flat plenum and the second substantially flat plenum;

wherein:

each of the first substantially flat vehicle support surface and the second substantially flat vehicle support surface of at least one of the unitary, elongated pieces of extruded concrete supports the first vehicle moving along the first direction; and

one or more photovoltaic modules are disposed over each of the first raised surface, the second raised surface, and the third raised surface of each of the unitary, elongated pieces of extruded concrete.

Assignments (6)
SECURITY INTEREST Recorded Nov 19, 2019
From: ALION ENERGY, INC.
To: BATIOS HOLDINGS LIMITED
Reel/Frame 051052/0484 →
SECURITY INTEREST Recorded Dec 15, 2015
From: ALION ENERGY, INC.
To: TRIPLEPOINT CAPITAL LLC
Reel/Frame 037298/0173 →
CHANGE OF NAME Recorded Nov 23, 2015
From: ALION, INC.
To: ALION ENERGY, INC.
Reel/Frame 037153/0648 →
RELEASE OF SECURITY INTEREST Recorded Sep 25, 2014
From: TRIPLEPOINT CAPITAL LLC
To: ALION, INC.
Reel/Frame 033821/0858 →
SECURITY AGREEMENT Recorded Apr 25, 2012
From: ALION, INC.
To: TRIPLEPOINT CAPITAL LLC
Reel/Frame 028106/0439 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2011
From: SWAHN, ANDERS; OELS, WOLFGANG
To: ALION, INC.
Reel/Frame 026714/0142 →
Continuity (2)
Continuation 61328575 · Apr 27, 2010
Related Publication 20110284057A1 · Nov 24, 2011