← 返回
不对称电网故障下HCC-HVDC直流二次谐波抑制方法
DC Secondary Ripple Suppression Method for HCC-HVDC Under Asymmetric Grid Fault Conditions
| 作者 | Lingfeng Deng · Xiaoping Zhou · Lerong Hong |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年4月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 混合换流换流器 高压直流系统 直流二次纹波 抑制方法 稳定性 |
语言:
中文摘要
基于混合换流器(HCC)的高压直流输电系统可避免交流单相接地故障引发的换相失败,但在严重不对称故障下,直流侧会产生显著的二次电压与电流谐波,威胁送端可再生能源系统的稳定运行。本文分析了直流二次谐波的产生与传输机制,发现受端电网负序电压经换流器调制转化为直流电压谐波,并通过直流线路及控制系统传播,导致送端母线电压波动。为此,提出一种利用HCC宽范围触发角调节能力的抑制方法,通过在逆变器触发角指令中注入双频扰动信号,使换流器非对称触发,引入基频开关函数的负序分量,与电网正序电压耦合以抵消直流二次谐波。设计了直流二次谐波抑制控制器(DCSRSC),实时检测交流负序电压并动态调节触发角,有效抑制谐波并提升直流输电稳定性。硬件在环实验验证了该方法的有效性。
English Abstract
The hybrid commutation converter (HCC) based high voltage direct current (HVDC) system features controllable turn-off capability, eliminating commutation failure (CF) caused by single-phase grounding faults in the AC grid. However, under severe asymmetric grid fault conditions, significant voltage and current secondary ripples occur in the DC lines and lead to sending end renewable energy systems destabilizing or even off-grid, posing a serious threat to the stable operation of HVDC systems. To address this issue, this paper first investigates the DC secondary ripple generation mechanism and its transmission process between the sending and receiving ends. It finds that negative-sequence voltage at the receiving end grid is converted into DC voltage ripple by converter modulation, propagating through the DC line and controller to induce fluctuation in the sending end converter bus voltage. Then, a method for suppressing DC secondary ripple for HCC-HVDC is proposed, leveraging the wide-range firing angle adjustment capability of HCC. The method involves actively injecting a double-frequency disturbance signal into the inverter firing angle command. This enables the converter to trigger asymmetrically and introduces a negative-sequence component into the fundamental frequency-switching function. The negative-sequence component couples with the positive-sequence voltage of the AC grid to offset the DC voltage secondary ripple. Finally, a DC secondary ripple suppression controller (DCSRSC) is designed based on the proposed method and embedded in the HVDC control system. The controller dynamically adjusts the inverter's firing angle based on real-time detection of AC negative-sequence voltage, effectively suppressing DC secondary ripple and enhancing the stability of DC power transmission. Hardware-in-the-loop experiments validate the effectiveness of the proposed method.
S
SunView 深度解读
该直流二次谐波抑制技术对阳光电源ST系列储能变流器及PowerTitan大型储能系统具有重要应用价值。文中提出的双频扰动触发角调节方法可直接应用于储能系统的并网逆变器控制策略,特别是在电网不对称故障工况下,通过注入负序分量抵消直流侧二次谐波,可显著提升储能变流器的直流母线电压稳定性,保护电池系统免受谐波冲击。该技术与阳光电源现有的GFM构网型控制技术结合,可增强储能系统在弱电网及故障穿越场景下的鲁棒性。建议将DCSRSC控制器集成到ST系列产品的DSP控制算法中,优化触发角动态调节策略,提升大型储能电站在复杂电网环境下的运行可靠性与电能质量。