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  • Bancada didática de redes inteligentes controlado por computador Edibon AEL BSGC

Bancada didática de redes inteligentes controlado por computador Edibon AEL BSGC

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Uma Rede Inteligente é uma rede elétrica que inclui uma variedade de medidas operacionais e de energia, incluindo medidores inteligentes, aparelhos inteligentes, fontes de energia renováveis ​​e recursos de eficiência energética. O controle da produção e distribuição de eletricidade é um aspecto importante das redes inteligentes estudadas com o "AEL-BSGC", aplicativo de redes inteligentes de energia controlada por computador. O aplicativo Smart Grids de energia controlada por computador, “AEL-BSGC”, foi projetado para estudar as Smart Grids nos campos de geração, transmissão, distribuição e consumo de carga.


ESPECIFICAÇÕES:


AEL-BSGC. Application:

The application includes the following modules:

 • N-ALI01. Industrial Main Power Supply.

        Supply voltage: 400 VAC, 3PH+N+G.

        ON-OFF removable key.

        Output voltage connections:

            Three-Phase + Neutral: 400 VAC.

            Single-Phase: 230 VAC

        Three-Phase supply hose with IP44 3PN+E 32A 400V connecting plug.

        Differential magnetothermal, 4 poles, 25 A, 300 mA AC 6 KA.

• N-PPIM1. Instrumentation Module 1.

        Three-Phase wattmeter:

            Measured range: 0 - 1.5 KW.

        Three-Phase varmeter:

            Measured range: 0 - 1.5 KVar.

        Voltmeter:

            Measured range: 0 - 500 V.

        Frequency meter:

            Measured range: 45 - 55 Hz.

        DC meter:

            Measured range: 0 - 10 A.   

• N-PPCM1. Control and Protection of Turbine-Generator Group Module 1.

        Automatic speed and voltage controller:

            Enables to connect up to 16 electric generators in parallel-island with distribution of active and reactive load and start/stop in function of the load demand.

            Enables to connect a generator in parallel with the grid.

            Enables different switches control modes, such as opening, closing and synchronization.

        Analogical outputs to control voltage and frequency regulators.

        Three-phase measurement of the grid and the generator voltage.

        Three-phase measurement of the generator intensity and power.

        Single-phase measurement of the grid intensity.

        Protection system:

            Generator:

               Maximum/minimum voltage (59/27), maximum/minimum frequency (81O/U), voltage   asymmetry, detection of dead busbars, overvoltage (32), load unbalance (46), negative sequence power/reduced power (32R/F), overcurrent by defined curve (50/51), inverse time overcurrent (IEC255), measured ground fault (50N/51N), phase rotation, switches faults.

            Network:

                Maximum/minimum voltage (59/27), maximum/minimum frequency (81O/U), vector jump, phase rotation.

            Six alarms:

                Alarm 1: Reverse power.

                Alarm 2: Overcurrent.

                Alarm 3: Over/undervoltage.

                Alarm 4: Inverse Time Overcurrent.

                Alarm 5: Over/under frequency.

                Alarm 6: Shutdown Alarms.

            Four operation signals:

                Ready for operation.

                Start request.

                Synchronization conditions.

                Permission for synchronization.

            Back-up protections:

                Current relay.

                Reverse Power relay.

                Ethernet connection: RJ45 communication port. 

• N-PSUB1. Power Generation Substation Module 1.

        Supply voltage: 400 VAC, 3PH+N.

        ON / OFF switch.

        Power and signal connections:

            Auxiliary connection.

        Three-phase turbine supply hose with IP44 3PN+E 32A 400V connecting plug.

        Three-phase generator supply hose with IP44 3PN+E 32A 400V connecting plug.

        Three switches to choose between the different modes:

            Local and remote control mode.

            Manual and automatic speed control.

            Manual and automatic excitation control

        Three control switches to:

             Start and stop the turbine.

             Give permission to synchronize the generator with the grid.

             Give permission to close 52NET circuit breaker.

        Two potentiometers to regulate:

             Turbine speed.

             Generator excitation.

        Emergency stop button.

        Two circuit breakers for synchronization and stand-alone operations.

        Different terminals to measure.

        Ethernet connection: RJ45 communication port for SCADA remote control. 

• N-AE1. Transmission Lines Simulation Module.

        Supply voltage: 400 VAC, 3PH+N.

        Three-phase line with variable parameters.

        Concentrated parameters line.

        Four capacitances benches between lines with three capacitances of 1 µF each one.

        Two capacitances benches between line and ground composed by two capacitances of 1 and 2 µF.

        Resistance of the line that can be wiring independently:

        Three resistors of 15 Ω.

        Three resistors of 30 Ω.

        Inductance of the line with several set values: 33 mH, 78 mH, 140 mH, 193 mH and 236 mH.

        Neutral resistor of 10 Ω. 

• N-EALD. Network Analyzer Unit with Computer Data Acquisition (2 units).

        ON-OFF switch.

        Supply voltage: 400 VAC.

        Input terminals: Input connection with the measurement point.

        Output terminals: Output connection with the measurement point.

        Digital outputs: Three digital outputs are used for pulses or alarms, or for combining both.

        RS-485 Communication port.

        Fuses: 3 x10 A.

        Network Analyzer Display. It shows:

            Active, reactive and apparent power.

            Active, reactive and apparent energies.

            Lines and phase currents.

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