2.2
THERMAL REPLICA
The P24xM relay models the time-current thermal characteristic of a motor by internally generating a thermal
replica of the machine. The thermal overload protection can be selectively enabled or disabled. The rms and
negative sequence components of the load current are measured independently and are combined together to
form an equivalent current, I
eq
, which is supplied to this replica circuit. The heating effect in the thermal replica is
produced by I
eq
2
and so takes into account the heating effect due to both positive or rms and negative sequence
components of current.
The equivalent current for operation of the overload protection is in accordance with the following expression:
I
eq
=
Ö
(I
RMS
2
+ K I
2
2
)
Where:
I
RMS
= Root mean square current
I
2
= Negative sequence current
K = A user settable constant proportional to the thermal capacity of the motor.
The temperature of a motor rises exponentially with increasing current. When current decreases, the temperature
also decreases in a similar manner. Therefore, to achieve close sustained overload protection, the P24xM relay
incorporates a wide range of thermal time constants. These allow the relay replica to closely match the protected
motor during heating and cooling.
Furthermore, the thermal withstand capability of the motor is affected by heating in the winding prior to the fault.
The thermal replica is designed to take into account the extremes of zero pre-fault current, known as the 'cold'
condition, and full rated pre-fault current, known as the 'hot' condition. With no pre-fault current, the relay
operates on the 'cold curve'. When a motor is, or has been, running at full load prior to a fault, the windings
dissipate heat and the 'hot curve' is applicable. Therefore, during normal operation, the relay operates in these two
limits, unless programmed to do otherwise.
To protect the motor during all operating conditions, three independently adjustable time constants are employed
in the overload curve:
T1 = Overload time constant applied when the current is between I
th
& 2I
th
.
T2 = Overload time constant applied for currents above 2I
th
.
Tr = Cooling time constant applied when the motor is stopped.
The following equation is used to calculate the trip time for a given current.
Note:
The relay trips at a value corresponding to 100% of its thermal state. The percentage of thermal capacity follows the
relationship %
q
= ( I
eq
/I
th
)
2
x 100.
t = T Ln [(k
2
- A
2
)/(k
2
- 1)]
The following equation is used to calculate the time it takes for the thermal alarm to be set.
t
alarm
= T Ln [(k
2
– A
2
)/(k
2
– (Thermal Alarm/100))]
Where:
T = T1 if I
th
< I
eq
<= 2I
th
T = T2 if I
eq
> 2I
th
T = Tr if I
eq
= 0 (CB open)
k = I
eq
/I
th
P24xM
Chapter 6 - Current Protection Functions
P24xM-TM-EN-2.1
75
Содержание P24DM
Страница 2: ......
Страница 17: ...Appendix C Wiring Diagrams 467 P24xM Contents P24xM TM EN 2 1 xv...
Страница 18: ...Contents P24xM xvi P24xM TM EN 2 1...
Страница 24: ...Table of Figures P24xM xxii P24xM TM EN 2 1...
Страница 25: ...CHAPTER 1 INTRODUCTION...
Страница 26: ...Chapter 1 Introduction P24xM 2 P24xM TM EN 2 1...
Страница 37: ...CHAPTER 2 SAFETY INFORMATION...
Страница 38: ...Chapter 2 Safety Information P24xM 14 P24xM TM EN 2 1...
Страница 51: ...CHAPTER 3 HARDWARE DESIGN...
Страница 52: ...Chapter 3 Hardware Design P24xM 28 P24xM TM EN 2 1...
Страница 66: ...Chapter 3 Hardware Design P24xM 42 P24xM TM EN 2 1...
Страница 67: ...CHAPTER 4 SOFTWARE DESIGN...
Страница 68: ...Chapter 4 Software Design P24xM 44 P24xM TM EN 2 1...
Страница 77: ...CHAPTER 5 CONFIGURATION...
Страница 78: ...Chapter 5 Configuration P24xM 54 P24xM TM EN 2 1...
Страница 94: ...Chapter 5 Configuration P24xM 70 P24xM TM EN 2 1...
Страница 95: ...CHAPTER 6 CURRENT PROTECTION FUNCTIONS...
Страница 96: ...Chapter 6 Current Protection Functions P24xM 72 P24xM TM EN 2 1...
Страница 188: ...Chapter 6 Current Protection Functions P24xM 164 P24xM TM EN 2 1...
Страница 189: ...CHAPTER 7 RESTRICTED EARTH FAULT PROTECTION...
Страница 190: ...Chapter 7 Restricted Earth Fault Protection P24xM 166 P24xM TM EN 2 1...
Страница 201: ...CHAPTER 8 CB FAIL PROTECTION...
Страница 202: ...Chapter 8 CB Fail Protection P24xM 178 P24xM TM EN 2 1...
Страница 215: ...CHAPTER 9 CURRENT TRANSFORMER REQUIREMENTS...
Страница 216: ...Chapter 9 Current Transformer Requirements P24xM 192 P24xM TM EN 2 1...
Страница 224: ...Chapter 9 Current Transformer Requirements P24xM 200 P24xM TM EN 2 1...
Страница 225: ...CHAPTER 10 VOLTAGE PROTECTION FUNCTIONS...
Страница 226: ...Chapter 10 Voltage Protection Functions P24xM 202 P24xM TM EN 2 1...
Страница 245: ...CHAPTER 11 FREQUENCY PROTECTION FUNCTIONS...
Страница 246: ...Chapter 11 Frequency Protection Functions P24xM 222 P24xM TM EN 2 1...
Страница 261: ...CHAPTER 12 POWER PROTECTION FUNCTIONS...
Страница 262: ...Chapter 12 Power Protection Functions P24xM 238 P24xM TM EN 2 1...
Страница 265: ...CHAPTER 13 MONITORING AND CONTROL...
Страница 266: ...Chapter 13 Monitoring and Control P24xM 242 P24xM TM EN 2 1...
Страница 294: ...Chapter 13 Monitoring and Control P24xM 270 P24xM TM EN 2 1...
Страница 295: ...CHAPTER 14 SUPERVISION...
Страница 296: ...Chapter 14 Supervision P24xM 272 P24xM TM EN 2 1...
Страница 312: ...Chapter 14 Supervision P24xM 288 P24xM TM EN 2 1...
Страница 313: ...CHAPTER 15 DIGITAL I O AND PSL CONFIGURATION...
Страница 314: ...Chapter 15 Digital I O and PSL Configuration P24xM 290 P24xM TM EN 2 1...
Страница 327: ...CHAPTER 16 COMMUNICATIONS...
Страница 328: ...Chapter 16 Communications P24xM 304 P24xM TM EN 2 1...
Страница 386: ...Chapter 16 Communications P24xM 362 P24xM TM EN 2 1...
Страница 387: ...CHAPTER 17 CYBER SECURITY...
Страница 388: ...Chapter 17 Cyber Security P24xM 364 P24xM TM EN 2 1...
Страница 405: ...CHAPTER 18 INSTALLATION...
Страница 406: ...Chapter 18 Installation P24xM 382 P24xM TM EN 2 1...
Страница 418: ...A B B A A B B A E01464 Figure 166 40TE case dimensions Chapter 18 Installation P24xM 394 P24xM TM EN 2 1...
Страница 419: ...CHAPTER 19 COMMISSIONING INSTRUCTIONS...
Страница 420: ...Chapter 19 Commissioning Instructions P24xM 396 P24xM TM EN 2 1...
Страница 443: ...CHAPTER 20 MAINTENANCE AND TROUBLESHOOTING...
Страница 444: ...Chapter 20 Maintenance and Troubleshooting P24xM 420 P24xM TM EN 2 1...
Страница 453: ...CHAPTER 21 TECHNICAL SPECIFICATIONS...
Страница 454: ...Chapter 21 Technical Specifications P24xM 430 P24xM TM EN 2 1...
Страница 470: ...Disengagement Time 250 ms Note Tested at 21 C Chapter 21 Technical Specifications P24xM 446 P24xM TM EN 2 1...
Страница 486: ...Chapter 21 Technical Specifications P24xM 462 P24xM TM EN 2 1...
Страница 487: ...APPENDIX A ORDERING OPTIONS...
Страница 488: ...Appendix A Ordering Options P24xM 464 P24xM TM EN 2 1...
Страница 491: ...APPENDIX B SETTINGS AND SIGNALS...
Страница 493: ...APPENDIX C WIRING DIAGRAMS...
Страница 494: ...Appendix C Wiring Diagrams P24xM 468 P24xM TM EN 2 1...
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