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Analysis of the Harmonic Transmission Characteristics of HVDC Transmission Based on a Unified Port Theory Model

机译:基于统一端口理论模型的HVDC传输谐波传输特性分析

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摘要

The application of power electronics can introduce flexibility into power systems, but it can also cause harmonic problems. As a typical application of power electronics, high-voltage direct current (HVDC) transmission exhibits very prominent harmonic problems. In recent years, many HVDC protection maloperation events caused by harmonic problems have occurred in the field. The phenomena of harmonic transfer and amplification in HVDC transmission have an undeniable impact on the overall operation of a power system. Previous studies of these phenomena have relied mainly on detailed electromagnetic transient simulations. However, these simulations normally suffer from a large computational burden and low efficiency due to the complexity of the models and the small simulation time steps used. Therefore, an efficient analysis model of harmonics for various HVDC operating modes is presented in this paper. This model is based on port theory; every part of the HVDC transmission system is represented by an equivalent two-port component to construct a unified equivalent circuit. The proposed model is simple to calculate, and only the connections of the two-port components need to be changed to model different operation modes. The proposed two-port model is applied for the harmonic analysis of an HVDC transmission system, and the validity and accuracy of the model are confirmed by detailed electromagnetic simulations. Moreover, the model can be easily applied to HVDC systems for harmonic transfer and amplification, and the effects of the HVDC transmission power and smoothing reactor on harmonic transfer and amplification are analyzed.
机译:电力电子设备的应用可以引入电力系统的灵活性,但也可以引起谐波问题。作为电力电子设备的典型应用,高压直流(HVDC)传输呈现出非常突出的谐波问题。近年来,在该领域发生了许多由谐波问题引起的HVDC保护误操作事件。 HVDC传输中谐波传输和扩增现象对电力系统的整体运行具有不可否认的影响。以前对这些现象的研究主要依赖于详细的电磁瞬态模拟。然而,由于模型的复杂性和使用的小模拟时间步骤,这些模拟通常具有大的计算负担和低效率。因此,本文提出了各种HVDC操作模式的谐波的有效分析模型。该模型基于端口理论; HVDC传输系统的每个部分由等效的双端口组件表示,以构造统一的等效电路。所提出的模型易于计算,并且只需要改变双端口组件的连接以模拟不同的操作模式。所提出的双端口模型应用于HVDC传输系统的谐波分析,通过详细的电磁模拟确认了模型的有效性和准确性。此外,该模型可以很容易地应用于HVDC系统以进行谐波传递和放大,分析HVDC传输功率和平滑反应器对谐波传输和放大的影响。

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