Power conversion device
US-2016226425-A1 · Aug 4, 2016 · US
US9768616B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9768616-B2 |
| Application number | US-201715447996-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 2, 2017 |
| Priority date | Apr 26, 2013 |
| Publication date | Sep 19, 2017 |
| Grant date | Sep 19, 2017 |
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A resonance suppression device configured to supply compensation current to a power system from a power conversion device connected to the power system, to suppress resonance which occurs with a power facility being connected to the power system, the resonance suppression device includes: a transfer function that is to be multiplied to a value based on voltage of the power system; a filter configured to extract a frequency component obtained by eliminating a fundamental wave component from frequency components contained in the inputted voltage, to output the resultant; and a coefficient control unit configured to control a coefficient of the transfer function so that a value of the compensation current falls within a predetermined range, according to output capacity of the power conversion device, wherein including a current command value generation unit being configured to generate as a current command value with respect to the power conversion device an output value obtained by inputting in the filter a value obtained by multiplying the transfer function to voltage of the power system or a value obtained by multiplying the transfer function to an output value obtained by inputting in the filter voltage of the power system, wherein the current command value generation unit outputs the current command value to the power conversion device, to supply the compensation current to the power system.
Opening claim text (preview).
What is claimed is: 1. A resonance suppression device configured to supply compensation current to a power system from a power conversion device connected to the power system, to suppress resonance which occurs with a power facility being connected to the power system, the resonance suppression device comprising: a transfer function that is to be multiplied to a value based on voltage of the power system; a filter configured to extract a frequency component obtained by eliminating a fundamental wave component from frequency components contained in the inputted voltage, to output the resultant; and a coefficient control unit configured to control a coefficient of the transfer function so that a value of the compensation current falls within a predetermined range, according to output capacity of the power conversion device, wherein including a current command value generation unit being configured to generate as a current command value with respect to the power conversion device an output value obtained by inputting in the filter a value obtained by multiplying the transfer function to voltage of the power system or a value obtained by multiplying the transfer function to an output value obtained by inputting in the filter voltage of the power system, wherein the current command value generation unit outputs the current command value to the power conversion device, to supply the compensation current to the power system. 2. The resonance suppression device according to claim 1 , wherein further includes a current control unit that generates a voltage command value to the power conversion device from the current command value, and the coefficient control unit controls the coefficient, to make a value of the compensation current based on the voltage command value fall within the predetermined range. 3. The resonance suppression device according to any one of claim 1 or 2 , wherein the coefficient control unit calculates a current command value deviation amount that is an amount of deviation of the current command value from a current command value range to be the predetermined range of a value of the compensation current and a voltage command value deviation amount that is an amount of deviation of the voltage command value from a voltage command value range to be the predetermined range of a value of the compensation current, and controls a coefficient of the transfer function based on the current command value deviation amount and the voltage command value deviation amount. 4. The resonance suppression device according to claim 3 , wherein the coefficient control unit controls the coefficient of the transfer function based on a sum of the current command value deviation amount and the voltage command value deviation amount. 5. The resonance suppression device according to any one of claim 2 or 3 , wherein the coefficient control unit calculates a current limiter gain correction coefficient based on the current command value deviation amount, calculates a voltage limiter gain correction coefficient based on the voltage command value deviation amount, and controls the coefficient of the transfer function using a value obtained by multiplying the current limiter gain correction coefficient and the voltage limiter gain correction coefficient. 6. The resonance suppression device according to claim 1 , the resonance suppression device comprising: an inverter connected in parallel with the power facility to the power system, the inverter functioning as the power conversion device.
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