Calculate correct FWHM statistic and draw circles at 1/20 of max
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+7
-1
@@ -49,7 +49,7 @@ void drawStars(QImage &img, const std::vector<Star> &stars)
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painter.setPen(Qt::red);
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for(auto star : stars)
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{
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painter.drawEllipse(QPointF(star.m_x, star.m_y), star.m_sx, star.m_sy);
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painter.drawEllipse(QPointF(star.m_x, star.m_y), star.hw20X(), star.hw20Y());
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}
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img = pix.toImage();
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}
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@@ -319,6 +319,8 @@ void LoadRunable::run()
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if(m_analyzeLevel>= Stars)
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{
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double fwhmX = 0;
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double fwhmY = 0;
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const int radius = 13;
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StarFit starFit(radius);
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std::vector<Star> stars;
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@@ -335,10 +337,14 @@ void LoadRunable::run()
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//printStarModel(radius, r, star);
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star.m_x += x;
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star.m_y += y;
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fwhmX += star.fwhmX();
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fwhmY += star.fwhmY();
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stars.push_back(star);
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}
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}
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drawStars(img, stars);
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info.append(StringPair(QObject::tr("FWHM X"), QString::number(fwhmX/stars.size())));
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info.append(StringPair(QObject::tr("FWHM Y"), QString::number(fwhmY/stars.size())));
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}
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qDebug() << "Star fit" << timer.restart();
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}
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+38
@@ -182,6 +182,44 @@ bool Star::valid() const
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return !isnan(m_am);
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}
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//half width at half maximum = sqrt(2*ln(2))
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double Star::hwhmX() const
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{
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return 1.177410023*m_sx;
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}
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double Star::hwhmY() const
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{
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return 1.177410023*m_sy;
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}
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// half width at 1/20 maximum
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double Star::hw20X() const
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{
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return 2.447746831*m_sx;
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}
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double Star::hw20Y() const
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{
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return 2.447746831*m_sy;
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}
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// full width at half maximum
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double Star::fwhmX() const
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{
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return 2.354820045*m_sx;
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}
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double Star::fwhmY() const
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{
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return 2.354820045*m_sy;
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}
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bool Star::operator<(const Star &d) const
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{
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return m_am < d.m_am;
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}
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StarFit::StarFit(int size)
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{
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m_size = size;
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