Output voltage of two photovoltaic inverters

The proposed control strategy for dual two-level inverter (DTLI)-based PV system includes two cascaded loops: (i) an inner current control loop that generates inverter voltage references, (ii) an outer dc-link voltage control loop to generate current reference.
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About Output voltage of two photovoltaic inverters

About Output voltage of two photovoltaic inverters

The proposed control strategy for dual two-level inverter (DTLI)-based PV system includes two cascaded loops: (i) an inner current control loop that generates inverter voltage references, (ii) an outer dc-link voltage control loop to generate current reference.

The proposed control strategy for dual two-level inverter (DTLI)-based PV system includes two cascaded loops: (i) an inner current control loop that generates inverter voltage references, (ii) an outer dc-link voltage control loop to generate current reference.

An inductance of value 67.35 mH was used to couple the two circuits together. Another adjustment needed to be considered was “locking” the phase of the inverter output voltage onto that of the .

A higher resultant voltage is obtained using CHB inverters by connecting lower voltage H-bridge cells in series with higher flexibility in their construction. In a CHB-based system, an enhanced input current and output voltage rating may be achieved using lower-rated components.

This article introduces the architecture and types of inverters used in photovoltaic applications. Inverters belong to a large group of static converters, which include many of today’s devices able to “convert” electrical parameters in input, such as voltage and frequency, so as to produce an output that is compatible with the .

This reference design implements single-phase inverter (DC/AC) control using a C2000TM microcontroller (MCU). The design supports two modes of operation for the inverter: a voltage source mode using an output LC filter, and a grid connected mode with an output LCL filter.

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