ADE7953: Add the ability to use accumulating energy registers, more precise power reporting (#6311)
Co-authored-by: Jesse Hills <3060199+jesserockz@users.noreply.github.com>
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@@ -6,6 +6,9 @@ namespace ade7953_base {
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static const char *const TAG = "ade7953";
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static const float ADE_POWER_FACTOR = 154.0f;
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static const float ADE_WATTSEC_POWER_FACTOR = ADE_POWER_FACTOR * ADE_POWER_FACTOR / 3600;
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void ADE7953::setup() {
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if (this->irq_pin_ != nullptr) {
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this->irq_pin_->setup();
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@@ -34,6 +37,7 @@ void ADE7953::setup() {
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this->ade_read_32(BIGAIN_32, &bigain_);
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this->ade_read_32(AWGAIN_32, &awgain_);
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this->ade_read_32(BWGAIN_32, &bwgain_);
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this->last_update_ = millis();
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this->is_setup_ = true;
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});
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}
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@@ -52,6 +56,7 @@ void ADE7953::dump_config() {
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LOG_SENSOR(" ", "Active Power B Sensor", this->active_power_b_sensor_);
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LOG_SENSOR(" ", "Rective Power A Sensor", this->reactive_power_a_sensor_);
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LOG_SENSOR(" ", "Reactive Power B Sensor", this->reactive_power_b_sensor_);
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ESP_LOGCONFIG(TAG, " USE_ACC_ENERGY_REGS: %d", this->use_acc_energy_regs_);
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ESP_LOGCONFIG(TAG, " PGA_V_8: 0x%X", pga_v_);
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ESP_LOGCONFIG(TAG, " PGA_IA_8: 0x%X", pga_ia_);
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ESP_LOGCONFIG(TAG, " PGA_IB_8: 0x%X", pga_ib_);
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@@ -85,6 +90,7 @@ void ADE7953::update() {
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uint32_t val;
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uint16_t val_16;
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uint16_t reg;
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// Power factor
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err = this->ade_read_16(0x010A, &val_16);
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@@ -92,23 +98,36 @@ void ADE7953::update() {
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err = this->ade_read_16(0x010B, &val_16);
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ADE_PUBLISH(power_factor_b, (int16_t) val_16, (0x7FFF / 100.0f));
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float pf = ADE_POWER_FACTOR;
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if (this->use_acc_energy_regs_) {
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const uint32_t now = millis();
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const auto diff = now - this->last_update_;
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this->last_update_ = now;
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// prevent DIV/0
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pf = ADE_WATTSEC_POWER_FACTOR * (diff < 10 ? 10 : diff) / 1000;
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ESP_LOGVV(TAG, "ADE7953::update() diff=%d pf=%f", diff, pf);
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}
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// Apparent power
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err = this->ade_read_32(0x0310, &val);
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ADE_PUBLISH(apparent_power_a, (int32_t) val, 154.0f);
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err = this->ade_read_32(0x0311, &val);
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ADE_PUBLISH(apparent_power_b, (int32_t) val, 154.0f);
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reg = this->use_acc_energy_regs_ ? 0x0322 : 0x0310;
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err = this->ade_read_32(reg, &val);
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ADE_PUBLISH(apparent_power_a, (int32_t) val, pf);
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err = this->ade_read_32(reg + 1, &val);
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ADE_PUBLISH(apparent_power_b, (int32_t) val, pf);
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// Active power
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err = this->ade_read_32(0x0312, &val);
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ADE_PUBLISH(active_power_a, (int32_t) val, 154.0f);
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err = this->ade_read_32(0x0313, &val);
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ADE_PUBLISH(active_power_b, (int32_t) val, 154.0f);
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reg = this->use_acc_energy_regs_ ? 0x031E : 0x0312;
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err = this->ade_read_32(reg, &val);
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ADE_PUBLISH(active_power_a, (int32_t) val, pf);
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err = this->ade_read_32(reg + 1, &val);
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ADE_PUBLISH(active_power_b, (int32_t) val, pf);
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// Reactive power
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err = this->ade_read_32(0x0314, &val);
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ADE_PUBLISH(reactive_power_a, (int32_t) val, 154.0f);
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err = this->ade_read_32(0x0315, &val);
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ADE_PUBLISH(reactive_power_b, (int32_t) val, 154.0f);
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reg = this->use_acc_energy_regs_ ? 0x0320 : 0x0314;
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err = this->ade_read_32(reg, &val);
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ADE_PUBLISH(reactive_power_a, (int32_t) val, pf);
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err = this->ade_read_32(reg + 1, &val);
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ADE_PUBLISH(reactive_power_b, (int32_t) val, pf);
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// Current
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err = this->ade_read_32(0x031A, &val);
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