/* -*- c++ -*- */ /* * Copyright 2004,2011 Free Software Foundation, Inc. * * This file is part of GNU Radio * * GNU Radio is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 3, or (at your option) * any later version. * * GNU Radio is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with GNU Radio; see the file COPYING. If not, write to * the Free Software Foundation, Inc., 51 Franklin Street, * Boston, MA 02110-1301, USA. */ #ifndef INCLUDED_ANALOG_PLL_FREQDET_CF_H #define INCLUDED_ANALOG_PLL_FREQDET_CF_H #include #include namespace gr { namespace analog { /*! * \brief Implements a PLL which locks to the input frequency and outputs * an estimate of that frequency. Useful for FM Demod. * \ingroup sync_blk * * Input stream 0: complex * Output stream 0: float * * This PLL locks onto a [possibly noisy] reference carrier on * the input and outputs an estimate of that frequency in radians per sample. * All settings max_freq and min_freq are in terms of radians per sample, * NOT HERTZ. The loop bandwidth determins the lock range and should be set * around pi/200 -- 2pi/100. * \sa pll_refout_cc, pll_carriertracking_cc */ class ANALOG_API pll_freqdet_cf : virtual public gr_sync_block { public: // gr::analog::pll_freqdet_cf::sptr typedef boost::shared_ptr sptr; /* \brief Make PLL block that outputs the tracked signal's frequency. * * \param loop_bw: control loop's bandwidth parameter. * \param max_freq: maximum (normalized) frequency PLL will lock to. * \param min_freq: minimum (normalized) frequency PLL will lock to. */ static sptr make(float loop_bw, float max_freq, float min_freq); virtual void set_loop_bandwidth(float bw) = 0; virtual void set_damping_factor(float df) = 0; virtual void set_alpha(float alpha) = 0; virtual void set_beta(float beta) = 0; virtual void set_frequency(float freq) = 0; virtual void set_phase(float phase) = 0; virtual void set_min_freq(float freq) = 0; virtual void set_max_freq(float freq) = 0; virtual float get_loop_bandwidth() const = 0; virtual float get_damping_factor() const = 0; virtual float get_alpha() const = 0; virtual float get_beta() const = 0; virtual float get_frequency() const = 0; virtual float get_phase() const = 0; virtual float get_min_freq() const = 0; virtual float get_max_freq() const = 0; }; } /* namespace analog */ } /* namespace gr */ #endif /* INCLUDED_ANALOG_PLL_FREQDET_CF_H */