9424200994 Rev U
165
BE1-11
g
Synchronizer (25A)
Frequency Correction
Generator frequency correction is defined by the Slip Frequency setting and further refined by the
Breaker Close Angle setting (available in PLL mode only). The Slip Frequency setting establishes the
maximum allowable deviation of the generator speed (frequency) from the bus frequency. The Minimum
Slip and Maximum Slip settings are used to calculate the slip frequency error and to provide slip
frequency control while in phase lock synchronization. If the slip frequency magnitude is above the
Maximum Slip setting, the error is set equal to the Max Error in the opposite polarity. If the slip frequency
magnitude is below the Minimum Slip setting, the slip frequency error is zero (0). When it is between the
two settings, the error is calculated internally by the BE1-11
g
. Slip frequency error is shown in Figure 101.
Figure 101. Slip Frequency Error
To minimize the impact on the bus during synchronization, the Frequency Source > Frequency
Destination setting can be enabled to force the generator frequency to exceed the bus frequency at the
moment of breaker closure. If this is the case, the BE1-11
g
will drive the generator frequency higher than
the bus frequency before closing the breaker.
The Breaker Close Angle setting (available in Phase Lock Loop mode only) defines the maximum
allowable phase angle difference between the generator and the bus. For breaker closure to be
considered in PLL mode, the slip angle must be less than or equal to the breaker close angle.
The breaker close angle is not used in Anticipatory mode. Instead, the breaker close time and metered
slip frequency are used to calculate an “advance angle”. The angle is considered in sync when the slip
angle equals the advance angle.
Voltage Correction
Generator voltage correction is defined by the Voltage Difference setting. This setting is expressed as a
percentage difference between the generator nominal voltage and bus nominal voltage. If the Voltage
Source > Voltage Destination setting is enabled, the BE1-11
g
will drive the generator voltage to at least
0.5% greater than the bus voltage.
Synchronization Failure
The Sync Fail Activation Delay and Breaker Close Attempts settings establish the maximum duration in
which synchronizing can occur. If the 25A Synchronizer element issues a breaker close, and the breaker
fails to close within this time, the logic increments the Breaker Close Attempts counter. If the number of
breaker close attempts has exceeded the Breaker Close Attempts setting, then generator synchronization
is aborted. At this time, the Sync Fail logic output pulses high. Note that if either bus becomes unstable,
the synchronizer timers are reset. The breaker close attempt counter retains its value.
Voltage Monitoring
The Volt Monitor logic output is provided for conditions where the bus and/or the line are dead. In
BESTlogic
Plus
, the Volt Monitor logic output can be connected to other logic elements to annunciate the
condition or control other elements in logic. The Volt Monitor logic output will only affect the 25A when
connected in logic. A live condition for either the phase voltage or auxiliary voltage is determined when
the measured voltage on the respective input is equal to or above the live voltage threshold established
by the Live Voltage setting. A dead condition for either phase voltage or auxiliary voltage is determined
when the measured voltage on the respective input is equal to or below the dead voltage threshold
established by the Dead Voltage setting. The Dropout Delay setting provides hysteresis for the Volt
Monitor logic output.
Slip Error
= Max (-)
Slip Error
= Max (+)
Slip Error = 0
P0064-49
Содержание BE1-11g
Страница 1: ...INSTRUCTION MANUAL FOR BE1 11g Generator Protection System Publication 9424200994 Revision U Jul 17...
Страница 2: ......
Страница 21: ...9424200994 Rev U 9 BE1 11g Introduction Figure 1 Style Chart...
Страница 22: ...10 9424200994 Rev U Introduction BE1 11g...
Страница 36: ...24 9424200994 Rev U Quick Start BE1 11g...
Страница 44: ...32 9424200994 Rev U Controls and Indicators BE1 11g...
Страница 54: ...42 9424200994 Rev U Contact Inputs and Outputs BE1 11g...
Страница 61: ...9424200994 Rev U 49 BE1 11g Overexcitation 24 Protection Figure 40 Inverse Time Delay and Reset Time...
Страница 62: ...50 9424200994 Rev U Overexcitation 24 Protection BE1 11g...
Страница 68: ...56 9424200994 Rev U Sync Check 25 Protection BE1 11g...
Страница 74: ...62 9424200994 Rev U Phase Undervoltage 27P Protection BE1 11g...
Страница 82: ...70 9424200994 Rev U Negative Sequence Voltage 47 Protection BE1 11g...
Страница 88: ...76 9424200994 Rev U Phase Overvoltage 59P Protection BE1 11g...
Страница 94: ...82 9424200994 Rev U Auxiliary Overvoltage 59X Protection BE1 11g...
Страница 96: ...84 9424200994 Rev U Stator Ground 64G Protection BE1 11g...
Страница 100: ...88 9424200994 Rev U Vector Jump 78V Protection BE1 11g...
Страница 106: ...94 9424200994 Rev U Frequency 81 Protection BE1 11g...
Страница 150: ...138 9424200994 Rev U Power 32 Protection BE1 11g...
Страница 154: ...142 9424200994 Rev U Loss of Excitation Reverse Var Based 40Q Protection BE1 11g...
Страница 158: ...146 9424200994 Rev U Distance 21 Protection BE1 11g...
Страница 170: ...158 9424200994 Rev U Resistance Temperature Detector 49RTD Protection BE1 11g...
Страница 174: ...162 9424200994 Rev U Analog Input Protection BE1 11g...
Страница 192: ...180 9424200994 Rev U Logic Timers 62 BE1 11g...
Страница 198: ...186 9424200994 Rev U Breaker Control Switch 101 BE1 11g...
Страница 206: ...194 9424200994 Rev U Setting Groups BE1 11g...
Страница 236: ...224 9424200994 Rev U Alarms BE1 11g...
Страница 238: ...226 9424200994 Rev U Differential Reporting BE1 11g...
Страница 248: ...236 9424200994 Rev U Demands BE1 11g...
Страница 250: ...238 9424200994 Rev U Load Profile BE1 11g...
Страница 254: ...242 9424200994 Rev U Power Quality BE1 11g...
Страница 262: ...250 9424200994 Rev U Trip Circuit Monitor 52TCM BE1 11g...
Страница 272: ...260 9424200994 Rev U BESTnet Plus BE1 11g Figure 188 Power Quality Page...
Страница 274: ...262 9424200994 Rev U Mounting BE1 11g Figure 190 J Type Case Side Dimensions...
Страница 280: ...268 9424200994 Rev U Mounting BE1 11g Figure 196 Retrofit Mounting Plate Basler P N 9424200073 Part 2...
Страница 282: ...270 9424200994 Rev U Mounting BE1 11g Figure 198 H1 Rack Mount Case Dimensions...
Страница 283: ...9424200994 Rev U 271 BE1 11g Mounting Figure 199 H1 Panel Mount Case Dimensions...
Страница 289: ...9424200994 Rev U 277 BE1 11g Mounting Figure 206 Dovetailing Procedure...
Страница 290: ...278 9424200994 Rev U Mounting BE1 11g...
Страница 297: ...9424200994 Rev U 285 BE1 11g Terminals and Connectors Figure 215 Example of Reversed CT Polarity...
Страница 298: ...286 9424200994 Rev U Terminals and Connectors BE1 11g...
Страница 304: ...292 9424200994 Rev U Typical Connections BE1 11g...
Страница 324: ...312 9424200994 Rev U BESTCOMSPlus Software BE1 11g...
Страница 344: ...332 9424200994 Rev U BESTlogic Plus BE1 11g...
Страница 354: ...342 9424200994 Rev U Communication BE1 11g Figure 263 Modbus Mapping Screen...
Страница 367: ...9424200994 Rev U 355 BE1 11g Timekeeping Figure 275 Front Panel Circuit Board Backup Battery Location...
Страница 370: ...358 9424200994 Rev U Timekeeping BE1 11g...
Страница 374: ...362 9424200994 Rev U Device Information BE1 11g...
Страница 392: ...380 9424200994 Rev U Configuration BE1 11g...
Страница 396: ...384 9424200994 Rev U Introduction to Testing BE1 11g...
Страница 408: ...396 9424200994 Rev U Commissioning Testing BE1 11g...
Страница 422: ...410 9424200994 Rev U Sync Check 25 Test BE1 11g...
Страница 426: ...414 9424200994 Rev U Phase Undervoltage 27P Test BE1 11g...
Страница 442: ...430 9424200994 Rev U Phase Overvoltage 59P Test BE1 11g...
Страница 454: ...442 9424200994 Rev U Auxiliary Overvoltage 59X Test BE1 11g...
Страница 458: ...446 9424200994 Rev U Vector Jump 78V Test BE1 11g...
Страница 466: ...454 9424200994 Rev U Frequency 81 Test BE1 11g...
Страница 496: ...484 9424200994 Rev U Inverse Overcurrent 51 Test BE1 11g...
Страница 516: ...504 9424200994 Rev U Phase Current Differential 87 Test BE1 11g...
Страница 520: ...508 9424200994 Rev U Neutral Current Differential 87N Test BE1 11g...
Страница 526: ...514 9424200994 Rev U Power 32 Test BE1 11g...
Страница 530: ...518 9424200994 Rev U Loss of Excitation Reverse Var Based 40Q Test BE1 11g...
Страница 534: ...522 9424200994 Rev U Distance 21 Test BE1 11g...
Страница 560: ...548 9424200994 Rev U Virtual Control Switches 43 Test BE1 11g...
Страница 570: ...558 9424200994 Rev U Logic Timers 62 Test BE1 11g...
Страница 584: ...572 9424200994 Rev U Troubleshooting BE1 11g...
Страница 614: ...602 9424200994 Rev U Specifications 25 Hz Operation BE1 11g BESTlogic Plus Update Rate cycle...
Страница 622: ...610 9424200994 Rev U Time Curve Characteristics BE1 11g Figure 357 Time Characteristic Curve A Standard Inverse BS 142...
Страница 630: ...618 9424200994 Rev U Time Curve Characteristics BE1 11g Figure 365 Time Characteristic Curve G Long Time Inverse BS 142...
Страница 633: ...9424200994 Rev U 621 BE1 11g Time Curve Characteristics Figure 368 Time Characteristic Curve B Very Inverse BS 142...
Страница 638: ...626 9424200994 Rev U Time Curve Characteristics BE1 11g Figure 373 Time Characteristic Curve C Extremely Inverse BS 142...
Страница 672: ...660 9424200994 Rev U RTD Module BE1 11g...
Страница 694: ...682 9424200994 Rev U BESTCOMSPlus Settings Loader Tool BE1 11g...
Страница 705: ......