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Design of an Automatic Control Algorithm for Energy-Efficient ...

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In- <strong>an</strong>d outputs 141<br />

B.3 Error codes<br />

The error codes <strong>for</strong> the three coded outputs. X me<strong>an</strong>s “value does not matter”.<br />

HEI_ST_errStellmotor<br />

Binary error Error/warning description<br />

XX1 Servo 1 (recirculation flap, HEI_deg_istStellM1) is not reacting as<br />

expected<br />

X1X Servo 2 (foot/defrost flap, HEI_deg_istStellM2) is not reacting as<br />

expected<br />

1XX Servo 3 (heater potentiometer, HEI_deg_istHeizPoti) is not reacting<br />

as expected<br />

HEI_ST_errSensor<br />

Binary error Error/warning description<br />

XXXXXXX1 Sensor 1 out <strong>of</strong> r<strong>an</strong>ge (SEN_T_istTempAus)<br />

XXXXXX1X Sensor 2 out <strong>of</strong> r<strong>an</strong>ge (SEN_T_istTempBrennerIn)<br />

XXXXX1XX Sensor 3 out <strong>of</strong> r<strong>an</strong>ge (SEN_T_istTempBrennerOut)<br />

XXXX1XXX Sensor 4 out <strong>of</strong> r<strong>an</strong>ge (SEN_T_istTempVerteilerK)<br />

XXX1XXXX Sensor 5 out <strong>of</strong> r<strong>an</strong>ge (SEN_T_istTempInn)<br />

XX1XXXXX Sensor 6 out <strong>of</strong> r<strong>an</strong>ge (SEN_T_istTempFrontsch)<br />

X1XXXXXX Sensor 7 out <strong>of</strong> r<strong>an</strong>ge (SEN_rel_istFeuchtAus)<br />

1XXXXXXX Sensor 8 out <strong>of</strong> r<strong>an</strong>ge (SEN_rel_istFeuchtInn)<br />

HEI_ST_errRegler<br />

Binary error Error/warning description<br />

XXXX1 Warning: CO2 simulation has reached the lower bound<br />

XX1XX Warning: disturb<strong>an</strong>ce estimations have reached a limit<br />

1XXXX Warning: the optimiser has not found a suitable control output, a<br />

p<strong>an</strong>ic h<strong>an</strong>dler is taken<br />

>1XXXXXX Error: the optimiser could not allocate the required memory

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