If the machine is allowed to rotate in the opposite direction, the thermal protection and negative phase sequence
overcurrent element detects the condition and trips the circuit breaker in their respective time delays. However, it is
sometimes better not to allow the motor to rotate at all.
For such applications, the P24xM relay includes a 3 phase voltage check detector. This element monitors the input
voltage rotation and magnitude. The positive sequence voltage should be greater than the negative sequence
voltage and the phase voltages VA, VB and VC should be greater than the user settable threshold. If the
aforementioned conditions are not satisfied then an alarm is raised. This alarm contact can be interlocked with the
motor contactor or circuit breaker to prevent the motor from being energized until correct phase rotation and
sufficient voltage exist on the system.
This feature requires a 52a circuit breaker auxiliary contact mapped to an opto input to get the information
CBclosed/CB open.
Setting guidelines
The undervoltage interlock (Start Low V Set) is provided to prevent the motor attempting to start on reduced
voltage. The setting is system dependent but may typically be set to:
80% - 90% of Vn.
6.5.1.2
LOSS OF PHASE (WHILE STARTING AND RUNNING)
Principle
If a motor is started with one phase open, it remains stationary and it can draw a current equal to 0.866 times the
normal starting current. Under these circumstances, the negative phase sequence component present in the
current is equal to half the normal starting current value. This is an extreme condition, as this amount of negative
phase sequence current rapidly overheats the motor, and unless corrective action is taken, the motor will be
seriously damaged.
Loss of one phase of the supply to a motor during normal running conditions, results in the following conditions:
Heating increases considerably due to high rotor losses caused by the -ve sequence current now present
Output of the motor is reduced and, depending on the load, an induction motor may stall or a synchronous motor
may pull out of synchronism,
The motor current will increase.
One common factor in the aforementioned conditions is the presence of negative phase sequence current. The
P24xM relay therefore incorporates a negative phase sequence current element to detect such extreme operating
conditions. This negative phase sequence current element operating time characteristic is of an inverse time
nature and is governed by the following formula:
t = TMS * [1.2/(I2/Is)]
Note:
If the I2/Is has to be limited, a fixed timer should be used for the threshold I2> value.
The element may be selectively enabled or disabled.
In addition to this, an independent, definite time alarm stage is provided.
Setting guidelines
This element should be set in excess of the anticipated negative phase sequence current resulting from
asymmetric CT saturation during starting, but less than the negative phase sequence current resulting from loss of
one phase during starting.
P24xM
Chapter 6 - Current Protection Functions
P24xM-TM-EN-2.1
107
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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