6 Protection Functions
P50 Agile P253
6-10
P253/EN M/C
T = KI
R
2
(1 – e
-t/
τ
)
Where;
I
R
= Current, which when left to flow continuously, would produce a temperature T
max
, in the motor.
For an overload current 'I', the temperature is given by;
T = KI
2
(1 – e
-t/
τ
)
For a motor not to exceed the rated temperature, the time 't' for which the motor can withstand the
current 'I' can be shown to be given by;
t =
τ
Ln [1/{1-(I
R
/I)
2
}]
An overload protection element should therefore satisfy the above relationship. The value of IR may
be the full load motor current or a percentage of it, depending on the motor design.
It is an oversimplification to regard a motor as a homogeneous body. The temperature rise of different
parts, or even of various points in the same part, can be very uneven. However, it is reasonable to
consider the current-time relationship follows an inverse fashion.
Thermal overload protection is designed to prevent the damage in the motors when the operating
temperature exceeds the maximum designed temperature.
2.3.1
Thermal Replica
Both the RMS and negative sequence currents are analysed to monitor the thermal state accounting
for any phase unbalance present. This thermal model takes in account the overheating, generated by
the negative phase sequence current in the rotor.
The equivalent motor heating current is calculated by:
I
eq
=
√
(I
rms
² + (K Coefficient* I
2
²)
Where
I
rms
: RMS current corresponding to the largest phase current.
I
2
: Negative phase sequence current.
K Coefficient is a constant proportional to the thermal capacity of the motor.
2.3.2
Thermal Trip
A multiple time constant thermal replica is used to account for different operating conditions of the
motor overload, starting or cooling conditions.
The equation used to calculate the trip time at 100% of thermal state is:
t =
τ
ln ((K²- A²)/ (K²- 1))
Where:
t:
Time to trip (in seconds)
τ
:
Thermal time constant depending on the current value absorbed by the motor:
•
Overload time constant
τ
= T
1
if IFL < Ieq
≤ 2xIFL
•
Start-up time constant
τ
= T
2
if Ieq> 2xIFL
•
Cooling time constant
τ
= T
r
if interrupting device opened
K:
Thermal overload equal to (Irms / k* IFL)
Содержание P50 Agile P253
Страница 3: ...P50 Agile P253 1 Introduction P253 EN M C 1 1 INTRODUCTION CHAPTER 1 ...
Страница 4: ...1 Introduction P50 Agile P253 1 2 P253 EN M C ...
Страница 11: ...SAFETY INFORMATION CHAPTER 2 ...
Страница 12: ...Safety Information Pxxx 2 ...
Страница 23: ...P50 Agile P253 3 Hardware Design P253 EN M C 3 1 HARDWARE DESIGN CHAPTER 3 ...
Страница 24: ...3 Hardware Design P50 Agile P253253 3 2 P253 EN M C ...
Страница 28: ...3 Hardware Design P50 Agile P253253 3 6 P253 EN M C E00276 Figure 2 Hardware design overview ...
Страница 32: ...3 Hardware Design P50 Agile P253253 3 10 P253 EN M C ...
Страница 33: ...P50 Agile P253 4 Front Panel P253 EN M C 4 1 FRONT PANEL CHAPTER 4 ...
Страница 34: ...4 Front Panel P50 Agile P253 4 2 P253 EN M C ...
Страница 39: ...P50 Agile P253 4 Front Panel P253 EN M C 4 7 Figure 2 USB port ...
Страница 40: ...4 Front Panel P50 Agile P253 4 8 P253 EN M C ...
Страница 41: ...P50 Agile P253 5 Configuration P253 EN M C 5 1 CONFIGURATION CHAPTER 5 ...
Страница 42: ...5 Configuration P50 Agile P253 5 2 P253 EN M C ...
Страница 154: ...5 Configuration P50 Agile P253 5 114 P253 EN M C ...
Страница 155: ...P50 Agile P253 6 Protection Functions P253 EN M C 6 1 PROTECTION FUNCTIONS CHAPTER 6 ...
Страница 156: ...6 Protection Functions P50 Agile P253 6 2 P253 EN M C ...
Страница 181: ...P50 Agile P253 7 Protection Parameter Settings P253 EN M C 7 1 PROTECTION PARAMETER SETTINGS CHAPTER 7 ...
Страница 182: ...7 Protection Parameter Settings P50 Agile P253 7 2 P253 EN M C ...
Страница 203: ...P50 Agile P253 8 Monitoring Control P253 EN M C 8 1 MONITORING CONTROL CHAPTER 8 ...
Страница 204: ...8 Monitoring Control P50 Agile P253 8 2 P253 EN M C ...
Страница 222: ...8 Monitoring Control P50 Agile P253 8 20 P253 EN M C ...
Страница 223: ...P50 Agile P253 9 SCADA Communications P253 EN M C 9 1 SCADA COMMUNICATIONS CHAPTER 9 ...
Страница 224: ...9 SCADA Communications P50 Agile P253 9 2 P253 EN M C ...
Страница 249: ...P50 Agile P253 10 Installation P253 EN M C 10 1 INSTALLATION CHAPTER 10 ...
Страница 250: ...10 Installation P50 Agile P253 10 2 P253 EN M C ...
Страница 259: ...P50 Agile P253 11 Commissioning Instructions P253 EN M C 11 1 COMMISSIONING INSTRUCTIONS CHAPTER 11 ...
Страница 260: ...11 Commissioning Instructions P50 Agile P253 11 2 P253 EN M C ...
Страница 270: ...11 Commissioning Instructions P50 Agile P253 11 12 P253 EN M C ...
Страница 271: ...P50 Agile P253 12 Maintenance and Troubleshooting P253 EN M C 12 1 MAINTENANCE AND TROUBLESHOOTING CHAPTER 12 ...
Страница 272: ...12 Maintenance and Troubleshooting P50 Agile P253 12 2 P253 EN M C ...
Страница 281: ...P50 Agile P253 13 Technical Specifications P253 EN M C 13 1 TECHNICAL SPECIFICATIONS CHAPTER 13 ...
Страница 282: ...13 Technical Specifications P50 Agile P253 13 2 P253 EN M C ...
Страница 292: ...13 Technical Specifications P50 Agile P253 13 12 P253 EN M C ...
Страница 293: ...P50 Agile P253 14 Wiring Diagrams P253 EN M C 14 1 WIRING DIAGRAMS CHAPTER 14 ...
Страница 294: ...14 Wiring Diagrams P50 Agile P253 14 2 P253 EN M C ...
Страница 296: ...14 Wiring Diagrams P50 Agile P253 14 4 P253 EN M C 2 WIRING DIAGRAM Figure 1 P253 wiring diagram ...
Страница 297: ......