INSTRUCTION MANUAL
FOR
GENERATOR PROTECTION SYSTEM
BE1-GPS100
The BE1-GPS100 Generator Protection System is an economical, microprocessor based, multifunction
system that is available in a drawout, H1 (half-rack), S1. and S1 double-ended package. BE1-GPS100
relays provide a comprehensive mix of protective functions to detect generator faults and abnormal
operating conditions in an integrated system. This system is suitable for any generator application and
many utility/co-generation facility Intertie applications. BE1-GPS100 features include:
• Three-phase and Neutral Overcurrent Protection
• Negative Sequence Overcurrent Protection
• Undervoltage and Overvoltage Protection
• Negative Sequence Overvoltage Protection
• Frequency Protection
• Directional Power Protection
• Volts per Hertz Protection
• Loss of Field Protection
• Breaker Failure Protection
• Synchronism Checking
• VT Circuit Monitoring
• Virtual Selector Switches
• General Purpose Timers
• Real-Time Instrumentation
• Reporting Functions
• Communication
• Self Diagnostics
• Logic Programmable (BESTlogic™)
BE1-GPS100 relays have four programmable contact sensing inputs, five programmable outputs, and
one alarm output. Outputs can be assigned to perform protection, control, or indicator operations through
logical programming. For example, protection functions could be programmed to cause a protective trip.
Control functions could be programmed to cause a manual trip, manual close, or automatic reclose.
Indicators could be configured to annunciate relay failure, a settings group change, and others.
Protection scheme designers may select from a number of pre-programmed logic schemes that perform
the most common protection and control requirements. Alternately, a custom scheme can be created
using BESTlogic.
A simplified Getting Started procedure for BE1-GPS100 users is provided in Section 2. Quick Start.
Features
The BE1-GPS100 relay includes many features for the protection, monitoring, and control of power
system equipment. These features include protection and control functions, metering functions, and
reporting and alarm functions. A highly flexible programmable logic system called BESTlogic allows the
user to apply the available functions with complete flexibility and customize the system to meet the
requirements of the protected power system. Programmable I/O, extensive communication features, and
an advanced HMI (human-machine interface) provide easy access to the features provided.
The following information summarizes the capabilities of this multifunction device. Each feature, along
with how to set it up and how to use its outputs is described in complete detail in the later sections of this
manual.
Input and Output Functions
Input functions consist of Power System Measurement and Contact Sensing Inputs. Programmable
Contact Outputs make up the output functions. Input and Output functions are described in the following
paragraphs.
Power System Measurement Functions
Three-phase currents and voltages are digitally sampled and the fundamental is extracted using a
Discrete Fourier Transform (DFT) algorithm. Digital sampling of the measured frequency provides high
accuracy at off-nominal values.
The voltage sensing circuits automatically configure themselves internally for single-phase, three wire or
four wire voltage transformer circuits. Voltage sensing circuitry provides voltage protection, frequency
protection, and watt/var metering. Neutral (residual) and negative sequence voltage magnitudes are
derived from the three-phase voltages. An auxiliary voltage sensing input provides protection capabilities
for over/undervoltage monitoring of the first and third harmonic of the VT source connected to the Vx
input. This capability is useful for stator ground fault protection and sync-check functions.
Each current sensing circuit is low burden and isolated. Neutral (residual) and negative sequence current
magnitudes are derived from the three-phase currents. An optional independent ground current input is
available for direct measurement of the current in a transformer neutral, tertiary winding, or flux balancing
current transformer.
Contact Sensing Inputs
Four programmable contact sensing inputs (IN1. IN2. IN3. and IN4) with programmable signal
conditioning provide a binary logic interface to the protection and control system. Each input function and
label is programmable using BESTlogic. A user-meaningful label can be assigned to each input and to
each state (energized and de-energized) for use in reporting functions.
Contact Outputs
Five programmable general-purpose contact outputs (OUT1. OUT2. OUT3. OUT4. and OUT5) provide a
binary logic interface to the protection and control system. One programmable, fail-safe contact output
(OUTA) provides an alarm output. Each output function and label is programmable using BESTlogic. A
user-meaningful name can be assigned to each output and to each state (open and closed) for use in
reporting functions. Output logic can be overridden to open, close, or pulse each output contact for testing
or control purposes. All output contacts are trip rated.
Protection and Control Functions
Protection functions consist of Overcurrent, Voltage, Frequency, Power, Fuse Loss, Breaker Failure