Fork of the espurna firmware for `mhsw` switches
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  1. // -----------------------------------------------------------------------------
  2. // Eergy monitor sensor
  3. // -----------------------------------------------------------------------------
  4. #pragma once
  5. #include "Arduino.h"
  6. #include "BaseSensor.h"
  7. #define EMON_DEBUG 0
  8. class EmonSensor : public BaseSensor {
  9. public:
  10. EmonSensor(double voltage, unsigned char bits, double ref, double ratio): BaseSensor() {
  11. // Cache
  12. _voltage = voltage;
  13. _adc_counts = 1 << bits;
  14. // Calculate factor
  15. _current_factor = ratio * ref / _adc_counts;
  16. // Calculate multiplier
  17. calculateMultiplier();
  18. #if EMON_DEBUG
  19. Serial.print("[EMON] Current ratio: "); Serial.println(ratio);
  20. Serial.print("[EMON] Ref. Voltage: "); Serial.println(ref);
  21. Serial.print("[EMON] ADC Counts: "); Serial.println(_adc_counts);
  22. Serial.print("[EMON] Current factor: "); Serial.println(_current_factor);
  23. Serial.print("[EMON] Multiplier: "); Serial.println(_multiplier);
  24. #endif
  25. }
  26. protected:
  27. virtual unsigned int readADC(unsigned char channel) {}
  28. void calculateMultiplier() {
  29. unsigned int s = 1;
  30. unsigned int i = 1;
  31. unsigned int m = s * i;
  32. while (m * _current_factor < 1) {
  33. _multiplier = m;
  34. i = (i == 1) ? 2 : (i == 2) ? 5 : 1;
  35. if (i == 1) s *= 10;
  36. m = s * i;
  37. }
  38. }
  39. double read(unsigned char channel, double &pivot) {
  40. int sample;
  41. int max = 0;
  42. int min = _adc_counts;
  43. double filtered;
  44. double sum = 0;
  45. unsigned long time_span = millis();
  46. for (unsigned long i=0; i<_samples; i++) {
  47. // Read analog value
  48. sample = readADC(channel);
  49. if (sample > max) max = sample;
  50. if (sample < min) min = sample;
  51. // Digital low pass filter extracts the VDC offset
  52. pivot = (pivot + (sample - pivot) / EMON_FILTER_SPEED);
  53. filtered = sample - pivot;
  54. // Root-mean-square method
  55. sum += (filtered * filtered);
  56. }
  57. time_span = millis() - time_span;
  58. // Quick fix
  59. if (pivot < min || max < pivot) {
  60. pivot = (max + min) / 2.0;
  61. }
  62. // Calculate current
  63. double rms = _samples > 0 ? sqrt(sum / _samples) : 0;
  64. double current = _current_factor * rms;
  65. current = (double) (int(current * _multiplier) - 1) / _multiplier;
  66. if (current < 0) current = 0;
  67. #if EMON_DEBUG
  68. Serial.print("[EMON] Total samples: "); Serial.println(_samples);
  69. Serial.print("[EMON] Total time (ms): "); Serial.println(time_span);
  70. Serial.print("[EMON] Sample frequency (Hz): "); Serial.println(1000 * _samples / time_span);
  71. Serial.print("[EMON] Max value: "); Serial.println(max);
  72. Serial.print("[EMON] Min value: "); Serial.println(min);
  73. Serial.print("[EMON] Midpoint value: "); Serial.println(pivot);
  74. Serial.print("[EMON] RMS value: "); Serial.println(rms);
  75. Serial.print("[EMON] Current: "); Serial.println(current);
  76. #endif
  77. // Check timing
  78. if ((time_span > EMON_MAX_TIME)
  79. || ((time_span < EMON_MAX_TIME) && (_samples < EMON_MAX_SAMPLES))) {
  80. _samples = (_samples * EMON_MAX_TIME) / time_span;
  81. }
  82. return current;
  83. }
  84. double _voltage;
  85. unsigned long _adc_counts;
  86. unsigned int _multiplier = 1;
  87. double _current_factor;
  88. unsigned long _samples = EMON_MAX_SAMPLES;
  89. };