IP Library Granted Patent US 8,217,534
Granted Patent B2
US 8,217,534 · App. 12/468,984 · Granted Jul 10, 2012

Power generator distributed inverter

Assignee: General Electric Company
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Quick Facts
Patent No.
US 8,217,534
App. No.
12/468,984
Granted
Jul 10, 2012
Kind
B2
Abstract

A power generator configuration having a distributed inverter. A system is described that includes a plurality of solar modules coupled together in series to form a string; a plurality of combiner boxes, wherein each combiner box couples together a plurality of strings in parallel; and a plurality of DC-DC converters, wherein each DC-DC converter increases a direct current (DC) voltage output of an associated combiner box. Also provided are distributed maximum power point tracker (MPPT) controls that adjust for changing conditions at individual sets of strings.

Claims (28)

1. A distributed power generator system, comprising:

a plurality of strings,

wherein each string in the plurality of strings includes a plurality of power generator modules coupled together in series;

a plurality of combiner boxes coupled to the plurality of strings, wherein each combiner box couples together a set of the strings in parallel;

a plurality of DC-DC converters coupled to the plurality of combiner boxes,

wherein each DC-DC converter is associated with a combiner box in the plurality of combiner boxes and increases a direct current (DC) voltage output of the associated combiner box;

a plurality of maximum power point tracker (MPPT) controls coupled to the plurality of DC-DC converters,

wherein each of the plurality of MPPT controls is coupled to a single associated DC-DC converter in the plurality of DC-DC converters and is configured to adjust an output of an associated combiner box in the plurality of combiner boxes based on a condition of the plurality of power generator modules coupled to the associated combiner box; and

a second stage combiner box for coupling outputs of the plurality of combiner boxes into a single DC output, the second stage combiner box including an integrated DC-DC converter.

2. The distributed power generator system of claim 1 , wherein each DC-DC converter in the plurality of DC-DC converters is coupled to an output line of an associated combiner box in the plurality of combiner boxes.

3. The distributed power generator system of claim 1 , further comprising an inverter assembly for converting the single DC output into an AC output.

4. The distributed power generator system of claim 1 , wherein each DC-DC converter is located proximate an output of the associated combiner box.

5. The distributed power generator system of claim 1 , wherein each DC-DC converter is integrated into the associated combiner box.

6. The distributed power generator system of claim 1 , wherein the plurality of power generator modules are selected from a group consisting of solar arrays and wind turbines.

7. A distributed power generator infrastructure, comprising:

a plurality of modules arranged in a plurality of strings,

wherein each string includes a subset of modules coupled together in series;

a plurality of combiner boxes coupled to the plurality of strings,

wherein each combiner box couples together a distinct set of the strings in a parallel configuration and provides an output line, and wherein each combiner box provides a fuse for each string in the set;

a plurality of DC-DC converters coupled to the plurality of combiner boxes,

wherein each DC-DC converter is coupled to an output line of an associated combiner box in order to boost a voltage of the associated output line;

a plurality of maximum power point tracker (MPPT) controls coupled to the plurality of DC-DC converters,

wherein each of the plurality of MPPT controls is coupled to a single associated DC-DC converter in the plurality of DC-DC converters and is configured to adjust an output of an associated combiner box in the plurality of combiner boxes based on a condition of the plurality of modules coupled to the associated combiner box;

a secondary combiner for combining a plurality of output lines into a single direct current line, the secondary combiner including an integrated DC-DC converter; and

an inverter for converting the single direct current line from direct current to alternating current.

8. The distributed power generator infrastructure of claim 7 , wherein each DC-DC converter in the plurality of DC-DC converters is integrated into an associated combiner box.

9. The distributed power generator infrastructure of claim 7 , wherein each DC-DC converter is placed along the output line of an associated combiner box.

10. The distributed power generator infrastructure of claim 7 , wherein the plurality of modules are selected from a group consisting of solar arrays and wind turbines.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2023
From: GENERAL ELECTRIC COMPANY
To: GE GRID SOLUTIONS LLC
Reel/Frame 066000/0694 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2009
From: SOK, VEASNA (NMN); PISKLAK, STEPHEN GEORGE; OLIVER, SUNIT (NMN)
To: GENERAL ELECTRIC COMPANY
Reel/Frame 022709/0850 →
Continuity (1)
Related Publication 20100295377A1 · Nov 25, 2010