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惯性和阻尼的逆向分布以抑制电力系统低频振荡
Inverse Distribution of Inertia and Damping for Mitigating Low-Frequency Oscillations in Power Systems
| 作者 | Huisheng Gao · Huanhai Xin · Linbin Huang · Fuyilong Ma · Ruohan Leng · Yongheng Yang |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年1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 | 低惯量换流器发电 惯性阻尼分配 频率响应 低频振荡 分配原则 |
语言:
中文摘要
低惯性换流器接口发电设备(CIGs)的大规模接入降低了电力系统的频率鲁棒性,增加了频率失稳的风险。因此,必须在电力系统中配置额外的(虚拟)惯量和阻尼,以维持和增强频率响应。然而,目前该领域的研究通常依赖复杂的数值算法,导致优化结果难以解释,且仅适用于特定情况。鉴于此,本文建立了一个更具通用性和易理解性的惯量和阻尼配置原则。首先,证明了当额外惯量和阻尼的总量固定时,它们在系统内的分布主要影响母线频率的差异,这种差异表现为发电设备之间的低频振荡(LFOs)。其次,揭示了对于涉及两组相对振荡设备的弱阻尼振荡模式,如果每组内的振荡幅度大致相等,采用反向分配惯量和阻尼的方式(惯量较小的组分配更多的阻尼,反之亦然)有助于抑制相应的振荡。这种分配方式与惯量和阻尼均匀分布的传统设置不同。本文通过算例分析验证了这些结论。
English Abstract
The large-scale integration of low-inertia converter-interfaced generations (CIGs) has reduced the power system's frequency robustness and increased the risk of frequency instability. Thus, it is imperative to allocate additional (virtual) inertia and damping in power systems to maintain and enhance frequency response. However, current research in this area typically relies on complicated numerical algorithms, making the optimized results difficult to interpret and only applicable to specific cases. In light of the above, this paper establishes a more general and comprehensible principle concerning the allocation of inertia and damping. Firstly, it is demonstrated that when the total amount of additional inertia and damping is constant, their distribution within the system predominantly influences the disparity in the bus frequency, which manifests as low-frequency oscillations (LFOs) between generation devices. Then, it is revealed that for a weakly damped oscillation mode involving two groups of relatively oscillating devices, if the oscillation amplitudes within each group are approximately equal, distributing inertia and damping inversely (more damping to the group with less inertia, and vice versa) assists in mitigating the corresponding oscillation. This distribution is different with the conventional setting that inertia and damping are uniformly distributed. Case studies are provided to validate these conclusions.
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SunView 深度解读
该逆向惯性阻尼分布技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。研究提出的弱区域附加阻尼控制与虚拟惯性配置策略,可直接应用于阳光电源构网型GFM控制和虚拟同步机VSG技术优化。通过结合iSolarCloud云平台的广域测量数据,实现储能系统惯性和阻尼参数的自适应调节,有效抑制高比例新能源接入场景下的低频振荡问题。该技术可增强ST储能变流器在电网薄弱节点的频率支撑能力,提升PowerTitan系统在大规模储能电站中的动态稳定性,为阳光电源构网型储能产品提供差异化竞争优势,特别适用于西部高比例新能源送出场景。