提供频率控制储备的大型光伏系统

J. C. Hernández, F. Sánchez-Sutil, P. Bueno
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引用次数: 4

摘要

光伏发电正在取代传统发电的重要部分。因此,最新的网络规范赋予了公用事业规模的光伏发电机组(uspvu)类似于传统同步发电的频率控制功能,即频率敏感模式(FSM)和惯性响应(IR)。此外,参与辅助服务市场的能源约束单位的新资格预审规则规定了频率控制储备(FCR)的大小。在此背景下,本研究基于前人的模型提出了一种带有V-f控制算法的增强型USPVU模型,该模型协调了最大功率点跟踪(MPPT)控制、嵌入式混合储能系统(HESS)的充放电控制和逆变器控制。整个控制一起工作,在USPVU中提供与传统发电相当的V-f控制能力。基于历史频率测量的短期和中期模拟表明,在uspvu中添加强制性FSM增强IR对频率稳定性的好处。
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Large photovoltaic systems providing frequency containment reserves
Photovoltaics is replacing an important portion of conventional generation. Therefore, the newest network codes endow utility-scale photovoltaic units (USPVUs) with frequency control functions similar to that of conventional synchronous generation, i.e., frequency sensitive mode (FSM) and inertial response (IR). Moreover, new prequalification rules for energy-constrained units participating in ancillary services market state the sizing of frequency containment reserves (FCR). In this context, the study presents from a previous authors' model an enhanced USPVU model with a V-f control algorithm which coordinates the maximum power point tracking (MPPT) control, the charging and discharging control of an embedded hybrid energy storage system (HESS), and the inverter control. The whole controls working together provide an equivalent V-f control capacity in the USPVU to that of conventional generation. Short-term and midterm simulations based on historic frequency measurements demonstrated the benefits of the added mandatory FSM enhanced with the IR in USPVUs on frequency stability.
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