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Application of rapid prototyping tools for a hierarchical microgrid control implementation

机译:快速原型工具在分层微电网控制实现中的应用

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This paper presents the application of rapid prototyping tools for the implementation of hierarchical microgrid automation and control algorithms in Real-Time/FPGA platforms based on a Triphase 3PExpress and a National Instruments CompactRIO platforms (NI cRIO). A three layer hierarchical control structure has been used, where the primary layer implements the power electronics controls, the secondary layer implements the microgrid controls and automation strategy, and the tertiary layer implements the energy management algorithms. The rapid prototyping tools offer an environment that allows the implementation of concepts related to the coordination, control and management of a Commercial and Industrial (C&I) building microgrid to provide high quality power to both the local loads (e.g. harmonic distortion) and the grid (e.g. ancillary services). The microgrid is composed of a three-phase diesel generator, a Li-ion battery, a motor-generator test rig for wind turbine emulation, a load bank with resistive, inductive and capacitive passive load emulation capabilities, a resistive load bank, a fault emulator and a back to back converter to emulate loads or distributed resources.
机译:本文介绍了快速原型制作工具在基于Triphase 3Pexpress和Ni Comcactrio平台(NI CRIO)的实时/ FPGA平台中实时/ FPGA平台中的分层微电网自动化和控制算法的应用。已经使用了三层分层控制结构,其中主层实现了电力电子控制器,辅助层实现了微电网控制和自动化策略,并且三级层实现了能量管理算法。快速的原型制作工具提供了一个环境,允许实现与商业和工业(C&I)的协调,控制和管理相关的概念,建立MicroGrid为局部负载(例如谐波失真)和网格提供高质量的功率(例如辅助服务)。微电网由三相柴油发电机,锂离子电池,用于风力涡轮机仿真的电动发电机试验台,具有电阻,电感和电容式载荷仿真能力的负载组,电阻负载库,故障仿真器和返回转换器,用于模拟负载或分布式资源。

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