A flexible power distribution network real-time simulation information modeling method
A real-time simulation and modeling method technology, applied in design optimization/simulation, electrical digital data processing, special data processing applications, etc. Simple and efficient moulding process
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[0019] Embodiment: A preparation method of a real-time simulation information modeling method for a flexible power distribution network, the method comprising the following steps:
[0020] Step 1. The real-time simulation platform with the built-in urban flexible distribution network model is used as an intelligent electronic device for overall modeling, and the simulator used for model simulation and data exchange with the outside world is used as a logic device. The specific functions of the flexible interconnection system of the urban distribution network are decomposed according to the "four remote" functions, forming four functional logical nodes of telemetry AO_MMXU, remote communication DO_XCBR, remote control DI_CSWI, and remote adjustment AI_MMXU;
[0021] Step 2. Convert the power grid model data in the real-time simulator into UDP format data packets containing analog and digital quantities, generate data packet description documents through repackaging and service m...
specific example
[0028] Specific examples: figure 1 It is the model structure of urban flexible distribution network demonstration project in the real-time simulation platform. The system is mainly composed of 10kV AC distribution network, ±10kV DC power distribution center, 380V AC microgrid and ±375V DC microgrid. monitor and adjust. Such as figure 1 As shown, the 10kV medium-voltage feeder is flexibly interconnected through three 1MVA modular multilevel converters MMC1, MMC2, and MMC3, and the ±10kV DC bus is connected to the ±375V DC microgrid system through a 500kW DAB DC transformer. The system mainly includes hybrid energy storage batteries, photovoltaic systems, DC charging piles, power electronic equipment, etc. The 500kVA MMC4 converter is connected to the 380V AC micro-grid system through an isolation transformer. The AC micro-grid system mainly includes hybrid energy storage batteries, AC charging piles, wind power generation systems, and power electronic equipment.
[0029] Und...
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