Abstract :
Phase, frequency, and amplitude of single-phase voltages are the most important and basic information required for single-phase grid-connected applications. This paper proposes a method for instantly and robustly estimating the phase, frequency, and amplitude of frequency-varying single-phase signals for such applications, which is a phase-locked loop (PLL) method based on a structure. The proposed method has the following attractive features: 1) the estimation system results in a nonlinear system, but it can be stabilized; 2) all subsystems constructing the system can be easily designed; 3) "two-phase signal generator"; can autotune a single system parameter in response to varying frequency of the injected signal; 4) high-order "PLL-Controllers" allowing fast tracking can be stably used; and 5) even in hostile envelopments, favorable instant estimates can be obtained. This paper proposes the estimation method and verifies its usefulness by extensive numerical experiments.
Keywords :
nonlinear systems; phase locked loops; signal generators; PLL-controllers; frequency-varying single-phase signals; nonlinear system; phase locked loops; two-phase signal generator; Active filters; Discrete Fourier transforms; Frequency estimation; Phase detection; Phase estimation; Phase locked loops; Robustness; Signal generators; Signal processing; Voltage; Frequency estimation; phase estimation; phase-locked loop (PLL); single phase;