Introduction
The Basler Electric Shunt-Static Exciter-Regulator (SSE) controls and regulates the generator output
voltage by controlling the generator field voltage. Standard features include underfrequency or volt/hertz
operation, manual control, and provisions for paralleling. The capabilities and parameters of each model
are detailed in Table 1-1. A power input transformer is supplied as a part of the SSE.
Options
The list of options described below contains some of the options that are available on all units and may be
on your unit.
• Failed rectifier detector
• Auto / manual nulling meter
• Manual tracking motor operated potentiometer
• Over / under excitation limiting
• AC shut-down contactor
• Field flashing contactor
• Paralleling current transformers
• VAR / power factor controller
• Primary fusing for power transformer when sold in cubicle
• Metering
• Potential transformer
• Cubicles
• MOC potentiometers
• Overexcitation protective relay
• Underexcitation protective relay

Operating Power
Three-phase ac is applied to the power isolation transformer to provide operating power to the regulated
power supply and the semiconverter power rectifier bridge.
When the generator is placed into operation, residual voltage will pass through the normally closed contacts
of K1. It is then rectified and applied to the generator field. When the generator output voltage builds up to
a sufficient value, K1 (connected across the output of the regulator power supply) energizes, and the
contacts open, removing the voltage build-up circuits. Thereafter, the power bridge output is established by
the gating pulses from the firing circuits. The minimum residual voltage required for build-up without flashing
is approximately 5% of nominal.
Flash and Overflash Protection (SSE 250 Series Only)
This circuit provides 125 Vdc to the generator field during start-up. When the generator output voltage rises
to 35% of nominal, the flashing voltage is removed and the static exciter regulator takes over. If the output
voltage does not build up in 25 seconds, the flashing voltage removed by the overflash protection circuitry.
Semiconverter Power Rectifier (Power Bridge)
The conduction time of the SCRs in the power bridge determines the amount of output current supplied to
the generator exciter field. Conduction time is controlled by the timing of gating pulses from the firing circuits.
The greater the conduction time of the SCRs, the greater the output current. The less the conduction time,
the less the output current.
Firing Circuit
The circuit compares a dc signal representative of the SCR output with a reference input established by the
manual adjust control (R5). Gating pulses to the power bridge are developed as a result of the comparison
of the two inputs. As R5 is adjusted to demand a higher or lower nominal generator output, the firing circuits
determine whether the gating pulses need to be applied earlier or later in the SCR firing cycle to establish
the new operating level. The power bridge responds by providing the correct output to the generator field.
When the auto / manual mode switch is in manual, R5 (essentially a manual voltage control) and the firing
circuits function independently of the rest of the exciter-regulator and the excitation system does not
regulate the system ac voltage. (Refer to Section 3. Controls)
Generator Sensing
Single-phase generator sensing voltage is connected at TS3-E1 and TS3-E3. Three-phase generator
sensing is connected to TS3-E1. TS3-E2. and TS3-E3. The sensing inputs are applied to the primary of
sensing transformers T3 and T4. The output voltage from the transformer(s) secondary windings is rectified
and a representative sample, taken from a voltage divider network, is applied to the automatic voltage
regulator. Selection of single-phase or three-phase sensing is done with a jumper on TS2 (Refer to Section
3. Jumper Connections).
Automatic Voltage Regulator (AVR)
The AVR senses any change in generator output voltage and translates such changes into a dc error
voltage. When the auto / manual mode switch is auto, the dc voltage is sent to the firing circuits where it
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