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Event function (EV)
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When using a Substation Automation system, events can be spontaneously sent or
polled from the terminal to the station level. These events are created from any available
signal in the terminal that is connected to the event function block. The event function
block can also handle double indication, that is normally used to indicate positions of
high-voltage apparatuses. With this event function block, data also can be sent to other
terminals over the interbay bus.
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The events can be created from both internal logical signals and binary input channels.
The internal signals are time tagged in the main processing module, while the binary
input channels are time tagged directly on each I/O module. The events are produced
according to the set event masks. The event masks are treated commonly for both the
LON and SPA channels. All events according to the event mask are stored in a buffer,
which contains up to 1000 events. If new events appear before the oldest event in the
buffer is read, the oldest event is overwritten and an overflow alarm appears.
The outputs from the event function block are formed by the reading of status and
events by the station HMI on either every single input or double input. The user-defined
name for each input is intended to be used by the station HMI.
Twelve of the event function blocks are executed with fast cyclicity. That means that
the time-tagging resolution on the events that are emerging from internal logical sig-
nals, created from configurable logic, is the same as the cyclicity of this logic. The time
tagging resolution on the events that are emerging from binary input signals have a res-
olution of 1 ms.
Two special signals for event registration purposes are available in the terminal,
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As basic, 12 event function blocks EV01-EV12 running with a fast cyclicity, are avail-
able in REx 5xx. When the function Apparatus control is included in the terminal, ad-
ditional 32 event function blocks EV13-EV44, running with a slower cyclicity, are
available.
Содержание REO 517
Страница 10: ... RQWHQWV ...
Страница 16: ...6 Introduction to the application manual KDSWHU QWURGXFWLRQ ...
Страница 64: ...54 Blocking of signals during test KDSWHU RPPRQ IXQFWLRQV ...
Страница 88: ...78 Scheme communication logic ZCOM KDSWHU LQH LPSHGDQFH ...
Страница 100: ...90 Time delayed phase and residual overcurrent protection TOC1 KDSWHU XUUHQW Equation 36 Iset IsSEC I1b 100 ...
Страница 146: ...136 Unbalance protection for capacitor banks TOCC KDSWHU XUUHQW ...
Страница 166: ...156 Dead line detection DLD KDSWHU 3RZHU V VWHP VXSHUYLVLRQ ...
Страница 171: ...161 About this chapter KDSWHU RQWURO KDSWHU RQWURO ERXW WKLV FKDSWHU This chapter describes the control functions ...
Страница 293: ...283 About this chapter KDSWHU RJLF KDSWHU RJLF ERXW WKLV FKDSWHU This chapter describes the logic functions ...
Страница 378: ...368 Monitoring of DC analog measurements KDSWHU 0RQLWRULQJ ...
Страница 379: ...369 About this chapter KDSWHU 0HWHULQJ KDSWHU 0HWHULQJ ERXW WKLV FKDSWHU This chapter describes the metering functions ...
Страница 384: ...374 Pulse counter logic PC KDSWHU 0HWHULQJ ...
Страница 412: ...402 Serial communication modules SCM KDSWHU DWD FRPPXQLFDWLRQ ...
Страница 440: ...430 LED indication module KDSWHU DUGZDUH PRGXOHV ...