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NEXUS Grid Simulator Module Based System

NEXUS Modular Scalable Grid Simulator

6 MVA Grid Interconnection Test, Module-Based Scalability, Integrated RLC for Anti-Islanding Test, SCR & X/R Emulation


Achieving compatibility between high-power and flexibility, NEXUS modular scalable grid simulator covers your grid interconnection test application crossing power-level from component to utility-scale systems. With fundamental scaling block unit of 50 kVA, a single cabinet of NEXUS can contain 8 modules for reaching 400 kVA and further by integrating a slave cabinet containing 7 modules for reaching 750 kVA with a single standalone system and 8 units to be connected in parallel for reaching 6 MVA maximum power rating. Versatile grid emulation functions available from the control interface and through host control with advanced software of Action 2020 developed by ActionPower.

User Manual

【User Manual】NEXUS Series Grid Simulator

Detailed installation, operation procedures, and safety information for engineers about NEXUS Series Grid Simulator.

Model Options

Model Power (kVA) Output Voltage (V) Output Current (A) Dimensions (mm) W × H × D
PRO20-60-4712 ±600 0.001–200.0 ±1200 1400x1000x1950
PRO20-A10-4702 ±100 0.001–200.0 ±200 800x1000x1950
PRO20-A10-9001 ±100 0.001–200.0 ±100 800x1000x1950
PRO20-A20-4704 ±200 0.001–200.0 ±400 800x1000x1950
PRO20-A20-9002 ±200 0.001–200.0 ±200 800x1000x1950
PRO20-A30-4706 ±300 0.001–200.0 ±600 800x1000x1950
PRO20-A30-9003 ±300 0.001–200.0 ±300 800x1000x1950
PRO20-A40-4708 ±400 0.001–200.0 ±800 800x1000x1950
PRO20-A40-9004 ±400 0.001–200.0 ±400 800x1000x1950
PRO20-A50-4710 ±500 0.001–200.0 ±1000 1400x1000x1950
PRO20-A50-9005 ±500 0.001–200.0 ±500 400x1000x1950
PRO20-A60-9006 ±600 0.001–200.0 ±600 1400x1000x1950
PRO20-A70-4714 ±700 0.001–200.0 ±1400 1400x1000x1950
PRO20-A70-9007 ±700 0.001–200.0 ±700 1400x1000x1950
PRO20-A75-4715 ±750 0.001–200.0 ±1500 1400x1000x1950

Technical Features

Modular scalable system for grid interoperability testing with compatibility around high power, flexibility and programmability and phased scalable testing system management.


Modular Scalability and Inter-Cabinet Mater-Slave Connection

Power module integrated within NEXUS are powered by ActionPower's patented power electronics technology. NEXUS achieves 750 kVA from a single cabinet through fiber-based communication without the slightest latency. The system supports phased scalability from 50 kW to 6 MVA with a maximum 8 units of cabinet in parallel connection. The compact footprint together with high-power rating supports with a maximum density of 563 kVA per m2.

Redundancy feature is available among, in case of a 6 MVA platform, the 56 power modules aligned throughout the 6 MVA grid code test platform for safeguarding consistent operation without downtime for testing automation.

modular scalability of NEXUS grid simulator

Full Four-Quadrant Operation Capability and Regenerative Load Emulation

NEXUS modular-scalable grid simulator is an integrated source-load and four-quadrant system (additionally with AC, DC, AC+DC output capability) with regenerative load functionality when operating as a programmable load for grid interconnection test. A load operation, standard CC, CP, CR and PQ are supporting for load emulation while recovering 92.5% of the energy back to utility. The system save your energy cost during power testing, relief your thermal management stress and HVAC implementation cost.

four quadrant operation capability of NEXUS grid simulator

user defined distortion profile of NEXUS grid simulator

User-Defined Programming Capability Backed by Precision, Response, and Dynamics

With the optimization technology combining algorithm and hardware foundations, NEXUS offers a high current precision of ±(0.1%+0.1% F.S.) for operation between 15~200 Hz. High slew rate demonstrates the excellent dynamics of NEXUS, reaching the fastest slew rate of 1.5V/μs and with capability of replicating 90° transient voltage shift or 100μs voltage dips validation.

Versatile user-defined programming capability allows List, Wave, Step and Pulse, Advanced modes, along with 100 sets of custom waveform available for test engineer to set up complex test sequence automation with harmonics, inter-harmonics, sags and other transient conditions.


Integrated RLC and Non-Linear Load Modelling for Weak Grid Simulation

NEXUS is both at operation and at system-level ready for validating (PV) inverters and Power Conversion Systems (PCS) against complex grid interaction conditions through an integrated 12 options of RLC modelling for replicating complex linear and non-linear load simulation.

NEXUS integrates multiple complex models, including 2-pulse to 24-pulse, positive/negative half-wave, and leading/trailing edge half-wave. Coupled with a broad Crest Factor (CF) setting range of 1 to 6, realistically replicating the impedance characteristics of various residential and industrial non-linear electrical terminals.

integrated RLC load bank of NEXUS grid simulator for anti islanding test

User-Defined SCR & X/R for Weak Grid Simulation and Grid-Forming Capability Test

NEXUS supports weak grid condition emulation thanks to its high-precision control, RLC network along with user-definable customized setting of Short Circuit Ratio (SCR) and X/R ratio characteristics.

Weak grid emulation supports the replication of utility conditions at the terminals of long-distance transmission lines or in remote microgrids in laboratory with purpose of verifying the grid-tied control stability (grid-forming capability) and anti-islanding protection performance of distributed energy resources (DERs) under grid impedance fluctuations.

weak grid condition emulation software of nexus

Built-In Testing Automation Sequence with Pre-Compliance to Grid Code Standards

NEXUS is specifically developed for grid code compliance testing with a comprehensive set of built-in pre-compliance testing automation sequence in alignment with both regional and international grid code standards and interoperability regulations. Test engineer no longer has to program by themselves for the applicable standards and testing guidelines yet may select from the built-in recipes including UL 1741, IEEE 1547.1, IEC 62116, IEC 61000-4 series along with regional applicable testing requirements. The system accelerates your to-market process and save your enduring in-house programming process along with the subsequent opportunity cost.

built in testing automation sequence

Technical Specifications

Note: The following specifications are subject to modifications and changes without notification in advance. All specifications measured are at product's maximum ratings, if not otherwise noted.

GENERAL SPECIFICATIONS

Output Modes AC, DC, AC+DC, DC+AC
Operation Modes Bidirectional & Regenerative
Output Phase Options 3-Phase, Split-Phase, Single-Phase

RLC LOAD

RESISTANCE
Range (Ω) 0.001 – 1000
Setting Resolution (Ω) 0.001
Accuracy ±0.1% F.S.
INDUCTANCE
Range (mH) 1 – 5000
Setting Resolution (mH) 0.001
Accuracy ±0.1% F.S.
CAPACITANCE
Range (µF) 1 – 5000
Setting Resolution (µF) 0.001
Accuracy ±0.1% F.S.
CREST FACTOR
Range 1.000 – 5.000
Resolution 0.001
POWER FACTOR
Range 1.000 – 1.000
Resolution 0.001

DC OUTPUT

VOLTAGE
Setting Resolution (V) 0.01V
Output Accuracy ±(0.01% + 0.05% F.S.)
Output Ripple (V_rms)
  • 470V series: < 1.5 (DC–300 kHz)
  • 900V series: < 2 (DC–300 kHz)
Load Regulation ±0.05% F.S.
Line Regulation ±0.01% F.S. @ 10% variation
Output Slew Rate
  • 470V series: DC>1V/μs
  • 900V series: DC>1.5V/μs
CURRENT
Setting Resolution 0.01
Accuracy ±(0.1% + 0.1% F.S.)

MEASUREMENT PARAMETERS

Voltage Accuracy ±(0.05% + 0.05% F.S.)
Current Accuracy ±(0.1% + 0.2% F.S.)
Active Power Accuracy ±0.5% F.S.
Apparent Power Accuracy ±0.5% F.S.

INPUT

Connection Method Three-phase four-wire ABC + PE
Frequency (Hz) 47 – 63
Voltage Range (V) 304 – 456
Power Factor ≥ 0.99 @ rated power
Efficiency ≥ 94%

MISCELLANEOUS

Communication Interface USB, LAN, RS485 (optional)
Multi-function Interface "Anyport", details defined in user manual
Operating Temperature -10°C to +50°C
Altitude ≤ 2000 m
Relative Humidity 10% to 80% RH
Protection Functions Input overvoltage/undervoltage/overfrequency/underfrequency/phase loss protection; Output overvoltage/overcurrent/ overpower protection; Internal overtemperature protection
Control & Display Local touch screen operation, remote PC control; displays voltage, current, frequency, power
Cooling Method Forced air cooling
Insulation (Negative–PE) 3400 VDC
Insulation (Positive–PE) 3400 VDC
Insulation (Input–PE) 3100 VDC

AC OUTPUT

VOLTAGE
Setting Resolution 0.01 V
Accuracy ±(0.05% + 0.05% F.S.)
Waveform Types Sine, Triangle, Pulse, Clipped Wave, Half-Wave, Multi-Pulse, 30 DST Groups, Custom Waveform
DC Component (mV) < 50 mV (DC component)
Voltage Distortion
  • For 470V series: < 0.4% @ 50/60 Hz; < 0.8% @ 15–200 Hz
  • For 900V series: < 0.6% @ 50/60 Hz (Load Regulation); < 1.2% @ 15–200 Hz (Load Regulation)
Load Regulation ±0.05% F.S. (Line Regulation)
Line Regulation ±0.05% F.S. @ 10% variation
Remote Sense Adaptive (Remote Sense)
Voltage Slew Rate
  • For 470V series: AC > 1 V/µs (Voltage Slew Rate)
  • For 900V series: AC > 1.5 V/µs
Three-Phase Unbalance Not exceeding 1/2 of the GB/T15543-2008 requirement (Negative-sequence voltage ≤1%, short-term ≤2%)
FREQUENCY
Range (Hz) DC, 0.001–200.0
Setting Resolution (Hz) 0.001
Accuracy 0.01%
PHASE
Range A = 0°, B = 240°, C = 120° (default); Programmable range 0°–359.9°, three phases independently adjustable
Accuracy ±0.1° @ 15–70 Hz; ±0.5° @ 70–200 Hz
Setting Resolution ±0.1° @ 15–70 Hz; ±0.5° @ 70–200 Hz
HARMONICS
Orders Up to 100 orders @ 40–70 Hz, 25 orders @ 70–200 Hz
Content Maximum 40% per order, total content up to 40%
Phase Angle Range 0°–359.9°
Amplitude Error ±5% or 0.1% of the fundamental value
Preview Function Preview of waveform with harmonic superposition
Edit Mode Import, Export, Read, Store
CURRENT
Impulse RMS (A_rms) 1.1 times rated for continuous operation, 1.2 times rated for up to 20 s
Setting Resolution (A) 0.01
Crest Factor 1–6
Accuracy 0.1% + 0.1% F.S. @ 15–200 Hz
PROGRAMMING
Programming Modes List, Wave, Step, Pulse, Advanced, Harmonic, Interharmonic
Minimum Programming Time Step 100 μs
Number of Steps 100 steps
Trigger Source Local software, external hardware
Loop Count 0–9,999,999
Parameters per Step Voltage, Frequency, Phase, Ramp Time, Dwell Time, Trigger Phase Angle, Trigger Pulse Output
Ramp Time Range 100 μs – 999 s
Dwell Time Range 100 μs – 999 s
Trigger Output & Enable One isolated low-voltage trigger signal, synchronized with power output parameter changes; supports single step, single cycle, single pulse triggering
Edit Mode Import, Export, Store, Read
Run Mode Run, Stop, Large loop (9,999,999) + Nested small loop (9,999,999)
Trigger Mode Automatic, Manual, External
FREQUENCY MODULATION
Source Mode Supported Modes
Programming Steps 100 steps
Programming Parameters Modulation Amplitude, Modulation Frequency, Dwell Time, Trigger Phase Angle
Programming Mode Import, Export, Store, Read
Trigger Source Local Software, External Hardware
Trigger Mode Automatic, Single Step
AMPLITUDE MODULATION
Supported Modes Source Mode
Programming Steps 100 steps
Programming Parameters Modulation Amplitude, Modulation Frequency, Dwell Time, Trigger Phase Angle
Programming Mode Import, Export, Store, Read
Trigger Source Local Software, External Hardware
Trigger Mode Automatic, Single Step
Control Method Percentage, Absolute Value
INTERNAL-RESISTANCE MODE
R Range (Ω) 0–10 (under steady-state output impedance)
L Range (mH) 0–2
Setting Resolution 0.001

About ActionPower India

ActionPower India is a regional network of Xi'an ActionPower Electric Co., Ltd., represented by Tangent Test Technologies in India for supporting business development and technical services for our regional clientele in the field of power testing. With 5 regional locations in India.

With 30 years of experience with power electronics and testing solutions, further backed by 295+ patents that enforce our technological advancement, we are ready to uncomplicate your challenges of industrial regulation compliance with IEC, IEEE, UL and India local grid code standards.

team at ActionPower India

Discuss with Our Technical Team