2020
DOI: 10.11591/ijpeds.v11.i2.pp594-604
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Design and analysis of controllers for high voltage gain DC-DC converter for PV panel

Abstract: Bidirectional high gain DC-DC buck boost converter is a virtual interface among PV source and inverter fed motor drive. In this article, a PV panel integrating a non-isolated bidirectional DC/DC converter that has high voltage gain voltage and a 3 phase three level DC/AC inverter is projected. It highlights the comparison between proportional integral controller (PIC), fractional order proportional integral derivative Controller (FOPIDC) and fuzzy logic controller (FLC) based Bidirectional DC/DC Power … Show more

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Cited by 6 publications
(6 citation statements)
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“…A three-stage converter connects the voltage to a battery, while the asynchronous Generator is incorporated into the alternating current conversion yield and bound into a converter return and energy. Reactive energy from the utility grid is required for an asynchronous generator to work effectively in 361 a grid-connected system [15]. The PV array inverter produces reactive power that goes to the asynchronous machine, which is powered by the PV array.…”
Section: With Dc-dc Converter Proposed Photovoltaic Inverter-fed Wind...mentioning
confidence: 99%
“…A three-stage converter connects the voltage to a battery, while the asynchronous Generator is incorporated into the alternating current conversion yield and bound into a converter return and energy. Reactive energy from the utility grid is required for an asynchronous generator to work effectively in 361 a grid-connected system [15]. The PV array inverter produces reactive power that goes to the asynchronous machine, which is powered by the PV array.…”
Section: With Dc-dc Converter Proposed Photovoltaic Inverter-fed Wind...mentioning
confidence: 99%
“…The voltage gain VO/Vin of traditional QBC is dictated by the switching operation, or duty cycle [23]. In this instance, the equation represents the voltage gain of a standard quadratic boost converter.…”
Section: Voltage Gain 41 Conventional Quadratic Boost Convertermentioning
confidence: 99%
“…Where 𝑐 the ratio of available charge capacity to total capacity, π‘˜ is the rate constant and 𝑄 π‘šπ‘Žπ‘₯ 0 is the maximum capacity of the battery [27]- [29]. The lifetime model of battery uses a double exponential curve fit to data characterizing cycles to failures versus cycle depth, and it is modeled using [30],…”
Section: Electrochemical Energy Storage Systems (Esss)mentioning
confidence: 99%