稳定风电波动的混合储能功率分配策略

Jing Shang, Ying Jia
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引用次数: 0

摘要

为解决能源短缺问题,风能等可再生能源在全球范围内得到了快速发展。然而,由于风力发电具有时变性和不确定性,在接入电网时容易产生局部波动,存在运行安全隐患。针对风力发电的稳定并网问题,提出了混合储能系统 利用模型实现风力发电功率平滑波动的方法,并提出了储能的充放电控制和分配方法。首先,利用模型预测控制方法获得了混合储能的初步功率;然后,利用自适应变模分解方法实现了电池和超级电容器之间的能量分配。最后,以新疆某 100MW 风力发电厂的实测数据为例进行了分析。经过验证,所提出的方法不仅能实现混合储能系统之间的合理功率分配,还能有效降低风力发电对电网的影响,实现混合储能系统的长期安全运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Energy Storage Power Allocation Strategy for Stabilizing Wind Power Fluctuations
In order to solve the problem of energy shortage, renewable energy such as wind power has developed rapidly worldwide. However, due to its time-varying and uncertain nature, wind power is prone to local fluctuations and operational safety hazards when connected to the power grid. In response to the stable grid connection problem of wind power generation, a hybrid energy storage system is proposed A method was proposed to achieve smooth power fluctuations in wind power generation using a model, and a charging and discharging control and allocation method for energy storage was proposed. Firstly, the preliminary power of hybrid energy storage was obtained using the model predictive control method, Then, an adaptive variational mode decomposition method was used to achieve energy distribution between batteries and supercapacitors. Finally, the measured data of a 100MW wind power plant in Xinjiang was analyzed as an example. The proposed method has been validated to not only achieve reasonable power allocation between hybrid energy storage systems, but also effectively reduce the impact of wind power generation on the power grid, achieving long-term safe operation of hybrid energy storage systems.
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