//+------------------------------------------------------------------+ //| RSIH_Calculator.mqh | //| Calculation engine for Ehlers' RSI with Hann Windowing (RSIH) | //| and Noise Elimination Technology (NET). | //| Copyright 2025, xxxxxxxx | //+------------------------------------------------------------------+ #property copyright "Copyright 2025, xxxxxxxx" #include //+==================================================================+ //| | //| CLASS 1: CRSIHCalculator (Base Class) | //| | //+==================================================================+ class CRSIHCalculator { protected: int m_period_rsi; int m_period_net; double m_price[]; virtual bool PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[]); public: CRSIHCalculator(void) {}; virtual ~CRSIHCalculator(void) {}; bool Init(int rsi_period, int net_period); void Calculate(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[], double &rsih_buffer[], double &net_buffer[]); }; //+------------------------------------------------------------------+ bool CRSIHCalculator::Init(int rsi_period, int net_period) { m_period_rsi = (rsi_period < 2) ? 2 : rsi_period; m_period_net = (net_period < 2) ? 2 : net_period; return true; } //+------------------------------------------------------------------+ void CRSIHCalculator::Calculate(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[], double &rsih_buffer[], double &net_buffer[]) { if(rates_total < m_period_rsi + 1) return; if(!PreparePriceSeries(rates_total, price_type, open, high, low, close)) return; // --- Step 1: Calculate the base RSIH indicator --- for(int i = m_period_rsi; i < rates_total; i++) { double cu = 0.0, cd = 0.0; for(int j = 1; j <= m_period_rsi; j++) { double diff = m_price[i - j + 1] - m_price[i - j]; double weight = 1.0 - cos(2 * M_PI * j / (m_period_rsi + 1.0)); if(diff > 0) cu += diff * weight; else cd += -diff * weight; } if(cu + cd > 0) rsih_buffer[i] = (cu - cd) / (cu + cd); else rsih_buffer[i] = (i > 0) ? rsih_buffer[i-1] : 0.0; } // --- Step 2: Apply Noise Elimination Technology (NET) --- if(m_period_net > 0) { double denominator = 0.5 * m_period_net * (m_period_net - 1); if(denominator <= 0) return; for(int i = m_period_rsi + m_period_net; i < rates_total; i++) { double numerator = 0; // Double loop for Kendall correlation for(int j = 1; j < m_period_net; j++) { for(int k = 0; k < j; k++) { // Ehlers' simplified formula is Num = Num - Sign(X[count] - X[K]) // This implies adding the sign of (X[fresher] - X[older]) // In our arrays, i-k is fresher than i-j double diff = rsih_buffer[i-k] - rsih_buffer[i-j]; // CORRECTED: Use addition instead of subtraction to match Ehlers' logic numerator += (diff > 0 ? 1 : (diff < 0 ? -1 : 0)); } } net_buffer[i] = numerator / denominator; } } } //+------------------------------------------------------------------+ bool CRSIHCalculator::PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[]) { ArrayResize(m_price, rates_total); switch(price_type) { case PRICE_CLOSE: ArrayCopy(m_price, close, 0, 0, rates_total); break; case PRICE_OPEN: ArrayCopy(m_price, open, 0, 0, rates_total); break; case PRICE_HIGH: ArrayCopy(m_price, high, 0, 0, rates_total); break; case PRICE_LOW: ArrayCopy(m_price, low, 0, 0, rates_total); break; case PRICE_MEDIAN: for(int i=0; i