2010Unpublished venueRequires access

DSP/FPGA implementation of a phase locked loop for digital power electronics

Yi Rao, Shivkumar V. Iyer

Open publisher page 3 citations

Abstract

This paper examines the implementation of a Phase Locked Loop (PLL) for obtaining the phase angle information of three-phase grid. The paper compares techniques previously employed to implement the PLL and provides their merits and demerits. A bang-bang type PLL has been designed and implemented in a Digital Signal Processor (DSP) so as to ensure that the PLL continues to function during severe grid conditions. Experimental results have been presented for various cases to verify the theory.

About this research paper

What this paper is about

This paper examines the implementation of a Phase Locked Loop (PLL) for obtaining the phase angle information of three-phase grid. The paper compares techniques previously employed to implement the PLL and provides their merits and demerits. A bang-bang type PLL has been designed and implemented in a Digital Signal Processor (DSP) so as to ensure that the PLL continues to function during severe grid conditions. Experimental results have been presented for various cases to verify the theory.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper examines the implementation of a Phase Locked Loop (PLL) for obtaining the phase angle information of three-phase grid. The paper compares techniques previously employed to implement the PLL and provides their merits and demerits. A bang-bang type PLL has been designed and implemented in a Digital Signal Processor (DSP) so as to ensure that the PLL continues to function during severe grid conditions. Experimental results have been presented for various cases to verify the theory.

Key concepts: Phase-locked loop, Digital signal processing, Field-programmable gate array, PLL multibit, Computer science, Electronic engineering, Digital signal processor, Loop (graph theory)

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