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BSS2000/BSS2000Pro Battery Simulation Software
BSS2000 & BSS2000 Pro software combined with ITECH's latest high-performance bidirectional DC power supply, IT6000B/IT6000C/IT-M3400/IT-M3600/IT6000C, covering a power range up to 10MW, can provide users with a wide range simulation solution covering low-power battery module to high-power power battery system simulation. The BSS2000 basic version, BSS2000 Pro version and BSS2000M Multi-channel version of the battery simulating software are products specifically designed for the above test scenarios. On the one hand, it will solve the problem of increasing cost of buying and storage of different types of batteries; On the other hand, the battery simulator can be quickly set to different state of SoC without real charge and discharge process, greatly improve test efficiency.
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Product Features

FEATURE

 Battery simulation range: 2250V/10MW
 Support multi-channel battery module status simulation
 Bidirectional regenerative battery simulator, regenerative efficiency up to 95%
 Seamless switching between battery charging and discharging mode
 Support user-defined battery characteristic curve import
 Support quick set up of battery characteristic curves by input common parameters
 Support .mat file import function *2
 BMS protocol self-defined function, realize CAN bus communication with the external control unit  
 Built-in various battery types (include LeadAcid, Lion, LMO, LNMCO, LNMCO&LMO, LFP, LTO, NiMH)  *1
 Battery protection parameter setting function
 Battery output initial state of charge setting function
 Ideal data report function
 Battery curve preview and real-time curve display function
 Flexible expansion by parallel for larger current/power simulation request
 Support up to 20 channels battery simulation *3


*1 BSS2000 basic version software is used to simulate lead-acid and lithium-ion batteries.
*2 BSS2000 Pro version and BSS2000M Multi-channel version
*3 BSS2000M


Functions and Advantages

Applications



Common battery parameters setting and function simulation

By combined various types of battery modelling and high-speed algorithms, BSS2000/BSS2000 Pro/BSS2000M Battery Simulation Software provide the user with real-time battery curve simulation function. No need to know the specific internal characteristics of the battery, the user only needs to select the battery type and the battery characteristic curve can be generated easily by setting a few basic
parameters, parameters including full voltage, empty voltage, rated capacity, serial qty, parallel qty and battery internal resistance, etc. Thanks to the strong support of ITECH hardware, the battery simulator can simulate up to 1152kW battery packs, covering the test requests of solar PV ,energy storage, EV and other high-power fields.



Built-in 8 battery type characteristic curves

BSS2000 series software has a rich built-in battery characteristic curve library for users. Users only need to select the corresponding battery type and configure basic capacity and protection parameters to quickly generate the corresponding type of battery characteristic curve. BSS2000 basic version software provides lithium battery and lead-acid battery types, BSS2000 Pro and BSS2000M software provide up to 8 battery type curves, namely lithium battery, lead-acid battery, lithium iron phosphate, ternary lithium, lithium manganate, lithium titanate , lithium nickel cobalt manganate and nickel metal hydride batteries.


User-defined battery characteristic curve

BSS2000 / BSS2000 Pro Battery Simulation Software provides the battery curve simulation function by Importing Data in ARB to meet the needs of various simulation requests. Users can import the measured battery charge and discharge data in a csv file to simulate the battery charge and discharge characteristic curve. This function is not only suitable for the simulation of conventional batteries, but also for the simulation of some special batteries or novel batteries.



Initial capacity setting function

The BSS2000/BSS2000 Pro battery simulator allows the user to set the initial capacity of the battery to study the startup characteristics or energy management characteristics of DUT when the battery is fully charged or depleted, without the need to perform real charging and discharging, and improve test efficiency.




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