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Controller Architecture Design for MMC-HVDC

机译:MMC-HVDC的控制器架构设计

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Compared with high voltage direct current (HVDC), the primary and secondary systems of modular multilevel converter based HVDC (MMC-HVDC) are complicated. And the characteristics of the control system determine the properties of the MMC-HVDC system to a certain extent. This paper investigates the design of control architecture. First, the structure and parameters of the 21-level MMC-HVDC are designed. Second, the framework of the control system is studied in details and a complete control system is established. The communication mode and content are built between each layer, and the control system program is developed and debugged. Then The steady state test platform of the sub-module and the relevant control system are designed. Finally, the steady-state tests and the system test of the physical MMC-HVDC simulation system are conducted, which prove that the SMC can control the sub-module (SM) efficiently, and the control system could realize efficient start and stop of the physical system. Meanwhile, the capacitor voltage balance between the sub-modules and the basic fault protection and control of the DC voltage and power are verified to be effective.
机译:与高压直流电(HVDC)相比,基于模块化多电平转换器的HVDC(MMC-HVDC)的初级和次级系统较为复杂。控制系统的特性在一定程度上决定了MMC-HVDC系统的性能。本文研究了控制体系结构的设计。首先,设计了21级MMC-HVDC的结构和参数。其次,详细研究了控制系统的框架,建立了完整的控制系统。在每一层之间建立通信模式和内容,并开发和调试控制系统程序。然后设计了子模块的稳态测试平台和相关的控制系统。最后,对MMC-HVDC物理仿真系统进行了稳态测试和系统测试,证明了SMC可以有效地控制子模块(SM),并且控制系统可以有效地启动和停止子模块。物理系统。同时,验证了子模块之间的电容器电压平衡以及基本故障保护和直流电压和功率的控制是有效的。

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