论文标题

虚拟惯性的最佳分配和下垂控制可再生能源的随机外观派遣

Optimal Allocation of Virtual Inertia and Droop Control for Renewable Energy in Stochastic Look-Ahead Power Dispatch

论文作者

Shen, Yukang, Wu, Wenchuan, Sun, Shumin, Wang, Bin

论文摘要

为了稳定可再生能源(RESS)主导的电力系统的频率,Ress通过虚拟惯性仿真或新发布的网格代码中的虚拟惯性模拟或下垂控制需要频率支持。由于长期RES预测涉及重大错误,因此我们需要在线配置RES的频率控制参数,以在稳定系统频率的前提下改善运营经济学。为了解决这一问题,本文提出了一个频率约束的随机外观启动功率调度(FCS-LAPD)模型,以将RESS和储能系统(ESSS)的频率控制参数作为调度变量,该变量可以最佳地分配Ress和Esss的虚拟企业和下垂系数。在此FCS-LAPD模型中,使用高斯混合模型(GMM)对RES的不确定性进行了表征。所需的储量由频率控制参数确定,并且储备成本系数适当调整以根据预测的发电量分配储备。由于频率纳迪尔约束的非线性,提出了一种凸壳近似方法,以使其线性化并保证可行性。提出的FCS-LAPD最终被铸造为二次编程的实例,并且可以有效地解决。对中国修改的IEEE 24总线系统和省级电力系统进行了案例研究,以显示拟议模型的有效性。

To stabilize the frequency of the renewable energy sources (RESs) dominated power system, frequency supports are required by RESs through virtual inertia emulation or droop control in the newly published grid codes. Since the long-term RES prediction involves significant errors, we need online configure the frequency control parameters of RESs in a rolling manner to improve the operation economics under the premise of stabilizing system frequency. To address this concern, this paper proposes a frequency constrained stochastic look-ahead power dispatch (FCS-LAPD) model to formulate the frequency control parameters of RESs and Energy Storage Systems (ESSs) as scheduling variables, which can optimally allocate the virtual inertia and droop coefficient of RESs and ESSs. In this FCS-LAPD model, the uncertainties of RESs are characterized using Gaussian Mixture Model (GMM). The required reserves are determined by frequency control parameters, and the reserve cost coefficients are adjusted properly to allocate the reserves according to the predicted power generation. Due to the nonlinearity of the frequency nadir constraint, a convex hull approximation method is proposed to linearize it with guaranteed feasibility. The proposed FCS-LAPD is ultimately cast as an instance of quadratic programming and can be efficiently solved. Case studies on modified IEEE 24-bus system and a provincial power system in China are conducted to show the effectiveness of the proposed model.

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