This paper presents a 31-level micro-inverter with an innovative control scheme. The presented micro-inverter makes use of a single PV panel connected to an MPPT converter. Four half-bridge legs are connected in series to produce 31 levels at the inverter's output. At the output side of the micro-inverter, a single full-bridge power circuit is used to generate positive and negative half-cycles. A high-frequency transformer and a push-pull converter are used to generate the required isolated DC sources. The output of an Analog to Digital Converter (ADC) is used as a gate pulse for the half-bridge circuit power switching devices. PSIM software was used to simulate the proposed micro-inverter, and the results are discussed. Hardware prototypes were also created and the results are displayed.
This paper presents an asymmetric multi-level inverter with a novel direct ADC control scheme. This scheme does not use a carrier wave or a reference sinusoidal wave to generate gate pulses for power switches, but an Analog to Digital Converter (ADC) to create gate pulses. For n sources, n bit ADC will generate 2n+1-1 levels at the output voltage of the inverter. This scheme uses the ADC output for the gate pulses for power switching devices. In this topology, the inverter comprises a series of connected half-bridges to generate a more significant level. The presented topology uses binary level supply voltages. Different topologies with different parameters are compared with the proposed inverter, and the operation of the proposed control scheme is verified with a simulation in Matlab. The prototype of a 31-level inverter is developed in hardware, and the hardware results are discussed.
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