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Technology and engineering application of cross area HVDC interconnection system high-precision simulation modeling based on ADPSS

机译:基于ADPSS的跨区域HVDC互联系统高精度仿真建模技术与工程应用

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摘要

In recent years, a large number of high voltage direct current(HVDC) transmission projects have been connected to AC systems. This has started to have an impact on AC/DC hybrid power grids, particularly receiving terminal power grids. An HVDC system is a large-scale power electronic integrated nonlinear system, and it includes a primary system and a control and protection system. Hence, the precision and degree of detail of HVDC systems directly affect the actual effect of simulation. In recent years, in the case of the normal operation and failure of AC power grids, the abnormal fluctuation and even locking of HVDC systems caused by the inappropriate strategies of the control and protection system component have strongly affected power grids. This has significantly affected the safety and stability of receiving power grids and normal operation. In this study, the actual engineering HVDC control logic provided by a manufacturer is analyzed and simulated based on the user defined component library of the ADPSS electromagnetic transient calculation program, and an HVDC control model based on an actual system is established. The accuracy of the DC control custom model based on ADPSS is verified through the simulation of an actual power grid.
机译:近年来,许多高压直流(HVDC)输电项目已经连接到交流系统。这已开始对AC / DC混合电网(尤其是接收终端电网)产生影响。高压直流输电系统是一种大规模的电力电子集成非线性系统,它包括一个主系统以及一个控制和保护系统。因此,HVDC系统的精度和详细程度直接影响模拟的实际效果。近年来,在交流电网正常运行和故障的情况下,由控制和保护系统组件的不当策略引起的HVDC系统的异常波动甚至锁定,严重影响了电网。这极大地影响了接收电网和正常运行的安全性和稳定性。在这项研究中,基于用户定义的ADPSS电磁暂态计算程序的组件库,分析和仿真了制造商提供的实际工程HVDC控制逻辑,并建立了基于实际系统的HVDC控制模型。通过对实际电网的仿真,验证了基于ADPSS的直流控制定制模型的准确性。

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