IP Library › Granted Patent US 9,453,658
Granted Patent B2
US 9,453,658 · App. 13/829,320 · Granted Sep 27, 2016

Micro-grid PV system

Inventor: David Kreutzman (Louisville, CO)
F24H1/0018F24H1/0027F24H1/185H01L31/042H02J1/00H02S10/20Y10T307/406
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 9,453,658
App. No.
13/829,320
Granted
Sep 27, 2016
Kind
B2
Abstract

Provided herein are systems and methods (i.e., utilities) that allow for the use of non-grid tied renewable energy systems (e.g., PV arrays and/or wind turbines) without requiring battery banks. In various aspects, these utilities permit the efficient use of renewable energy systems to generate electrical power as well as the ability to dynamically direct where such electrical power is applied.

Claims (29)

1. A controller for use in operating a non-grid tied photovoltaic (PV) system, comprising:

an electrical input connectable to the at least one PV panel for receiving electrical power from said PV panel;

a first electrical output connectable to at least one variable resistance resistive load adapted to convert electrical power to thermal energy, wherein the controller is free of electrical inputs or outputs connected to a utility power grid;

at least a second electrical output connectable to at least one electrical application load;

a switching circuit electrically connected to said electrical input and selectively connectable to said electrical outputs;

a processor that supports control logic that is adapted to:

identify a current power capacity of the PV panel and dynamically allocate the electrical power between said at least one electrical application load and said variable resistance resistive load;

generate control signals for receipt by said switching circuit, wherein said switching circuit connects said electrical power to at least one of said at least one electrical application load and said resistive load in accordance with said control signals;

calculate a Power Voltage (P-V) curve for current operating conditions of said at least one PV panel; and

generate a resistance control signal for receipt by said variable resistance resistive load to alter resistance of said variable resistance resistive load to operate said at least one PV panel at a desired location on said P-V curve.

2. The controller of claim 1 , wherein said at least one resistive load comprises a heating element immersed in water.

3. The controller of claim 1 , wherein said control logic is further adapted to:

identify electrical load requirements of said at least one electrical application load;

generate at least one electrical application control signal, for receipt by said switching circuit, to connect said at least one electrical application load to said electrical power when sufficient electrical power is available to satisfy said load requirements of said at least one electrical application load; and

generate an resistive load control signal, for receipt by said switching circuit, to connect said resistive load to electrical power in excess of electrical power utilized by said at least one electrical application load.

4. The controller of claim 3 , wherein said control logic is further operative to

allocate said electrical power to balance a total load of said at least one electrical application load and said resistive load with said current power capacity of the PV panel free of storage of any of said electrical power to a battery bank.

5. The controller of claim 3 , wherein said control logic is further operative to

generate said resistance control signal for receipt variable resistance resistive load to generate a total resistive load for said PV panel to maintain a substantially constant output voltage from said PV panel.

6. The controller of claim 1 , further comprising:

a load indicator operatively connected to each said second electrical output, wherein said load indicator provides an output for receipt by said controller when said second electrical output is at full capacity.

7. The controller of claim 1 , further comprising:

a voltage regulator circuit interconnecting said electrical input and said controller, wherein said voltage regulator provides regulated power from said PV panel to said controller for operation of said controller, wherein said controller is free of other power input sources.

8. The controller of claim 1 , wherein said controller is further operative to generate a non-grid reference signal for receipt by said PV panel, wherein said non-grid reference signal is receivable by an inverter associated with said panel for use in generating electrical power in accordance with said non-grid reference signal.

9. The controller of claim 1 , further comprising:

an inverter for receiving power from said controller, wherein said inverter is interconnected to a utility power grid, wherein said inverter is operative to selectively supply said electrical power from said PV panel to said utility power grid.

10. The controller of claim 1 , wherein said controller is operative to receive load application criteria comprising at least one of:

priority of electrical application loads; and

temporal limitations regarding when electrical application loads are connected to said electrical power.

Continuity (1)
Related Publication 20140265573A1 · Sep 18, 2014