Maximizing power in a photovoltaic distributed power system
US-9812984-B2 · Nov 7, 2017 · US
US11656522B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11656522-B2 |
| Application number | US-201916582519-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 25, 2019 |
| Priority date | Sep 28, 2018 |
| Publication date | May 23, 2023 |
| Grant date | May 23, 2023 |
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A temperature regulation system includes a laminate material that has a first light transmissive electrode layer, a rear electrode layer, and a bistable electrophoretic medium disposed between the first and second electrode layer. The electrophoretic medium includes two types of particles that have different charges and color. The amount of incident radiation (visible light, infrared, etc.) that is absorbed by the laminate can be modified by providing a voltage between the electrode layers.
Opening claim text (preview).
The invention claimed is: 1. A temperature regulating device comprising: a structure comprising an internal reservoir configured to retain a fluid, the reservoir including an inlet in fluid communication with the internal reservoir and an outlet in fluid communication with the internal reservoir, the structure having an incident light surface comprising capsules containing (i) first particles having a first electrophoretic mobility and having a first color and (ii) second particles having a second electrophoretic mobility and having a second color, wherein the first electrophoretic mobility and the second electrophoretic mobility are different, and wherein the first color and the second color are different; a temperature sensor in contact with the fluid and configured to measure a temperature of the fluid; a voltage source for applying a voltage to the capsules; and a controller in electrical communication with the temperature sensor and the voltage source, the controller being configured to execute a program stored in the controller to apply a level of the voltage to the capsules based on a temperature of the fluid received from the temperature sensor. 2. The temperature regulating device of claim 1 , wherein the capsules further comprise a carrier medium and the first particles and second particles are disposed in the carrier medium. 3. The temperature regulating device of claim 1 , wherein the first color has a first albedo and the second color has a second albedo, and the first albedo is greater than the second albedo. 4. The temperature regulating device of claim 3 , wherein the first color is black and the second color is white. 5. The temperature regulating device of claim 1 , wherein the incident light surface is a roof of a vehicle. 6. The temperature regulating device of claim 1 , wherein the incident light surface is a roof of a dwelling. 7. The temperature regulating device of claim 1 , wherein the electrical communication between the controller and the voltage source is wireless. 8. The temperature regulating device of claim 1 , wherein the controller and the voltage source are enclosed in a waterproof housing. 9. The temperature regulating device of claim 1 , further comprising a photovoltaic power supply in electrical communication with the controller. 10. The temperature regulating device of claim 9 , wherein the controller, the photovoltaic power supply, and the voltage source are enclosed in a waterproof housing. 11. The temperature regulating device of claim 1 , wherein the controller executes the program stored in the controller to apply a first level of the voltage to the capsules when a temperature received from the temperature sensor is below a predetermined temperature and to apply a second level of the voltage to the capsules when a temperature received from the temperature sensor is at or above the predetermined temperature.
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