Modular Power Conversion System
US-2015318705-A1 · Nov 5, 2015 · US
US9660452B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9660452-B2 |
| Application number | US-201213469868-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 11, 2012 |
| Priority date | May 12, 2011 |
| Publication date | May 23, 2017 |
| Grant date | May 23, 2017 |
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An exemplary method for controlling transfer of electrical power in island mode in an arrangement having a converter and a load connected to the converter through a filter. The method including determining voltage reference components for one or more frequency components of an output voltage of the converter. An effect of a load current is compensated for by forming one or more voltage feedforward terms based on the load current and using the feedforward terms to adjust the voltage reference components. Control reference components for one or more of the frequency components are formed based on the voltage reference components, and a control reference is formed based on the control reference components. The output voltage of the converter is controlled based on the control reference.
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What is claimed is: 1. A method for controlling transfer of electrical power in island mode in an arrangement including a converter and a load connected to the converter, the method comprising: determining voltage reference components for one or more frequency components of an output voltage of the converter, wherein the frequency components represent at least one of a positive sequence component, a negative sequence component, or harmonic components; compensating for an effect of a load current by forming one or more voltage feedforward terms based on the load current and using the feedforward terms to adjust the voltage reference components; filtering the voltage reference components using a high-pass filter; forming flux reference components for one or more of the frequency components by integrating the filtered voltage reference components; forming a flux reference based on the flux reference components; and controlling the output voltage of the converter based on the flux reference using a flux controller. 2. The method according to claim 1 , wherein determining the voltage reference components comprises: determining a load voltage reference; determining a load voltage; and determining a voltage reference component based on a difference between the load voltage reference and the load voltage. 3. The method according to claim 1 , wherein the load is connected to the converter through a filter, and wherein the method comprises: forming one or more voltage feedforward terms, wherein each term is a complement of a gain of a load current term of the filter at a predefined frequency, and adding the feedforward terms to the voltage reference components. 4. The method according to claim 1 , wherein one or more negative sequence components of the output voltage are compensated for. 5. The method according to claim 1 , wherein one or more harmonic components of the output voltage are compensated for. 6. The method according to claim 1 , wherein the method comprises: controlling a magnitude of a fundamental frequency voltage if the magnitude (|i|) of a converter current vector tries to rise above a set limit (i max ), wherein the controlling is carried out such that the magnitude (|i|) of a converter current vector is maintained under the set limit. 7. The method according to claim 1 , wherein at least one component or term of the voltage reference components, the voltage feedforward terms, and the flux reference components is formed in a rotating reference frame. 8. The method according to claim 1 , wherein the voltage reference components are determined in a rotating reference frame, the voltage feedforward terms are formed in rotating reference frames, and the forming flux reference components are formed in rotating reference frames. 9. The method according to claim 1 , wherein at least one component or term of the voltage reference components, the voltage feedforward terms, and the flux reference components is formed in a stationary reference frame. 10. An apparatus for controlling transfer of electrical power in island mode in an arrangement including a converter and a load connected to the converter through a filter, the apparatus comprising: means for determining voltage reference components for one or more frequency components of an output voltage of the converter, wherein the frequency components represent components such as a positive sequence component, a negative sequence component or harmonic components; means for compensating for an effect of a load current by forming one or more voltage feedforward terms based on the load current and using the feedforward terms to adjust the voltage reference components; means for filtering the voltage reference components using a high-pass filter; means for forming flux reference components for one or more of the frequency components by integrating the filtered voltage reference components; means for forming a flux reference based on the flux reference components; and a flux controller for controlling the output voltage of the converter based on the flux reference. 11. The apparatus of claim 10 , comprising: means for forming one or more voltage feedforward terms, wherein each term is a complement of a gain of a load current term of the filter at a predefined frequency, and means for adding the feedforward terms to the voltage reference components. 12. A non-transitory computer-readable medium storing computer-readable instructions for a method of controlling transfer of electrical power in island mode in an arrangement including a converter and a load connected to the converter through a filter, which when in communicable contact with a processor causes the processor to execute the method comprising: determining voltage reference components for one or more frequency components of an output voltage of the converter, wherein the frequency components represent at least one of a positive sequence component, a negative sequence component, or harmonic components; compensating for an effect of a load current by forming one or more voltage feedforward terms based on the load current and using the feedforward terms to adjust the voltage reference components; filtering the voltage reference components using a high-pass filter; forming flux reference components for one or more of the frequency components by integrating the filtered voltage reference components; forming a flux reference based on the flux reference components; and controlling the output voltage of the converter based on the flux reference using a flux controller. 13. The computer readable medium of claim 12 , wherein determining the voltage reference components comprises: determining a load voltage reference; determining a load voltage; and determining a voltage reference component based on a difference between the load voltage reference and the load voltage.
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