7.1.5
Harmonic Compensation
The MX
3
motor overload calculation automatically compensates for the additional motor heating that can result from the presence of
harmonics. Harmonics can be generated by other loads connected to the supply such as DC drives, AC variable frequency drives, arc
lighting, uninterruptible power supplies, and other similar loads.
7.1.6
Hot / Cold Motor Overload Compensation
If a motor has been in operation for some time, it will have heated up to some point. Therefore, there is typically less overload content
available in the case where a motor is restarted immediately after it has been running when compared to the situation where a motor has
been allowed to cool down before restarting. The MX
3
provides adjustable hot motor overload compensation to fully protect the motor
in these cases.
If the hot and cold maximum locked rotor times are provided, the MX
3
Hot/Cold Ratio parameter value can be calculated as follows:
If no motor information is available, a Hot/Cold ratio value of 60% is usually a good starting point.
The MX
3
adjusts the actual motor overload content based on the programmed Hot/Cold Ratio set point and the present running current of
the motor so that the accumulated motor overload content accurately tracks the thermal condition of the motor. If the motor current is
constant, the overload content eventually reaches a steady state value. This value is derived as follows:
The running OL content is also adjusted based on the derating factor due to the presence of any current imbalances , harmonics and or
RTD Biasing.
If the existing motor overload content is less than the calculated running OL content, the motor overload exponentially increases the
overload content until the appropriate running overload content level is achieved. If the existing motor overload content is greater than
the calculated running OL content level, the overload exponentially cools down or decreases to the appropriate running overload content
level. The rate of the running motor overload heating or cooling is controlled by the Motor Overload Cooling Time (PFN32) parameter.
141
7 - THEORY OF OPERATION
%
100
x
Time
Rotor
Locked
Cold
Max
Time
Rotor
Locked
Hot
Max
1
Ratio
H/C
OL
÷
ø
ö
ç
è
æ -
=
Factor
Derate
Imbalance
Current
1
FLA
Current
Ratio
H/C
OL
OL
ss
´
´
=
Summary of Contents for RediStart MX3 Series
Page 9: ...1 Introduction 1...
Page 15: ...2 Technical Specifications 7...
Page 35: ...3 Installation 27...
Page 61: ...4 Keypad Operation 53...
Page 71: ...5 Parameter Groups 63...
Page 79: ...6 Parameter Description 71...
Page 145: ...7 Theory of Operation 137...
Page 188: ...NOTES 180 7 THEORY OF OPERATION...
Page 189: ...8 Troubleshooting Maintenance 181...
Page 208: ...NOTES 200 8 TROUBLESHOOTING MAINTENANCE...
Page 209: ...Appendices 201...
Page 237: ...Publication History Revision Date ECO 00 12 15 06 Initial Release...