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New PLL: experimental lock condition algorithm based on phi hat averaging
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@ -51,7 +51,8 @@ PhaseLockComplex::PhaseLockComplex() :
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m_lockTime1(480),
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m_lockTime(2400),
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m_lockTimef(2400.0f),
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m_lockThreshold(4.8f)
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m_lockThreshold(4.8f),
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m_avgPhi(240)
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{
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}
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@ -97,6 +98,7 @@ void PhaseLockComplex::setSampleRate(unsigned int sampleRate)
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m_lockTime = sampleRate / 20; // 50ms for order > 1
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m_lockTimef = (float) m_lockTime;
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m_lockThreshold = m_lockTime * 0.002f; // threshold of 0.002 taking division by lock time into account
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m_avgPhi.resize(sampleRate / 200);
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reset();
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}
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@ -167,6 +169,20 @@ void PhaseLockComplex::feed(float re, float im)
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// lock estimation
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if (m_pskOrder > 1)
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{
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// m_avgPhi(m_phiHat);
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// float vPhi = normalizeAngle(m_phiHat - m_avgPhi.asFloat());
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//
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// if ((vPhi > -0.2) && (vPhi < 0.2)) // locked condition
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// {
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// if (m_lockCount < 20) { // [0..20]
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// m_lockCount++;
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// }
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// }
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// else // unlocked condition
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// {
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// m_lockCount = 0;
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// }
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float dPhi = normalizeAngle(m_phiHat - m_phiHatPrev);
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if (m_phiHatCount < (m_lockTime-1))
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@ -24,6 +24,7 @@
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#define SDRBASE_DSP_PHASELOCKCOMPLEX_H_
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#include "dsp/dsptypes.h"
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#include "util/movingaverage.h"
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#include "export.h"
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/** General purpose Phase-locked loop using complex analytic signal input. */
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@ -84,6 +85,7 @@ private:
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int m_lockTime;
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float m_lockTimef;
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float m_lockThreshold;
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MovingAverageUtilVar<float, float> m_avgPhi;
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};
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