Circuit arrangement for a photovoltaic inverter for break relief using short-circuit switches, and uses of the circuit arrangement
US-2016226256-A1 · Aug 4, 2016 · US
US9762143B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9762143-B2 |
| Application number | US-201514698897-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 29, 2015 |
| Priority date | Apr 29, 2015 |
| Publication date | Sep 12, 2017 |
| Grant date | Sep 12, 2017 |
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An inverter controller is configured to control inverters connected in parallel. The inverter controller is configured to closes switch of a first inverter and turn on a first switching element provided at the first inverter to charge capacitors of the inverters at the time of starting the inverters, and to close the other switches after the capacitors are charged.
Opening claim text (preview).
What is claimed is: 1. An inverter controller configured to control inverters being provided with capacitors and first switches on DC sides, respectively, the DC sides of the inverters being connected in parallel AC sides of the inverters being connected in parallel, comprising: a first start-time controller configured to perform first start-time control of closing the first switch of a first inverter of the inverters and turning on at least a first switching element provided at the first inverter to charge the respective capacitors of the inverters at the time of starting the inverters; and a second start-time controller configured to perform second start-time control of closing the respective first switches of the other inverters after the respective capacitors of the inverters are charged by the first start-time control by the first start-time controller. 2. The inverter controller of claim 1 , wherein the first start-time controller closes the first switch of the first inverter and turns on the first switching element which is provided on the same polarity side as a polarity side of the first switch of the first inverter as the first start-time control. 3. The inverter controller of claim 1 , wherein the first start-time controller closes the first switch, of the first inverter and turns on the first switching elements which are provided on the same polarity sides as polarity sides of the respective first switches of the inverters, respectively, as the first start-time control. 4. The inverter controller of claim 1 , wherein the inverters include second switches which are provided on opposite polarity sides to polarity sides of the first switches, respectively, and the first start-time controller closes the respective second switches of the inverters as the first start-time control. 5. The inverter controller of claim 1 , wherein the inverters include second switches which are provided on opposite polarity sides to polarity sides of the first switches, respectively, and the first start-time controller closes the first switch and the second switch of the first inverter and turns on the first switching element of the first inverter and a second switching element which is provided in a different phase on an opposite polarity side to a polarity side of the first switching element as the first start-time control. 6. The inverter controller of claim 1 , wherein the inverters include second switches which are provided on opposite polarity sides to polarity sides of the first switches, respectively, and the first start-time controller closes the first switch and the second switch of the first inverter and turns on the respective first switching elements of the inverters and second switching elements which are provided in different phases on opposite polarity sides to polarity sides of the first switching elements, respectively, as the first start-time control. 7. The inverter controller of claim 1 , wherein the inverters convert direct-current power into three-phase alternating-current power. 8. The inverter controller of claim 1 , wherein the inverters convert direct-current power into single-phase alternating-current power. 9. An inverter control method of controlling inverters being provided with capacitors and first switches on DC sides, respectively, the DC sides of the inverters being connected in parallel, AC sides of the inverters being connected in parallel, comprising: performing first start-time control of closing the first switch of a first inverter of the inverters and turning on at least a first switching element provided at the first inverter to charge the respective capacitors of the inverters at the time of starting the inverters; and performing second start-time control of closing the respective first switches of the other inverters after the respective capacitors of the inverters are charged by the first start-time control. 10. A power supply system, comprising: a power supply configured to output direct-current power; inverters configured to convert direct-current power output from the power supply into alternating-current power, the inverters being provided with capacitors and first switches on DC sides, respectively, the DC sides of the inverters being connected in parallel, AC sides of the inverters being connected in parallel; a first start-time controller configured to perform first start-time control of closing the first switch of a first inverter of the inverters and turning on at least a first switching element provided at the first inverter to charge the respective capacitors of the inverters at the time of starting the inverters; and a second start-time controller configured to perform second start-time control of closing the respective first switches of the other inverters after the respective capacitors of the inverters are charged by the first start-time control by the first start-time controller.
Means for starting or stopping converters · CPC title
with a plurality of power processing stages connected in parallel · CPC title
with analogue control of three-phase output · CPC title
arranged for operation in parallel · CPC title
Means for protecting converters other than automatic disconnection · CPC title
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