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光伏发电技术 储能系统 模型预测控制MPC ★ 5.0

基于改进EMPC并考虑混沌特性的海上双面漂浮光伏系统动态跟踪MPP控制

Dynamic tracking MPP control of offshore bifacial floating photovoltaic systems with improved EMPC accounting for chaotic properties

语言:

中文摘要

摘要 海上漂浮式双面光伏(FBPV)系统的部署受到恶劣海洋环境所带来固有挑战的制约,此类环境会引发系统混沌运动和功率输出波动。为解决这一问题,本文提出一种改进的经济模型预测控制(EMPC)策略,并结合改进正弦算法引导的蜣螂优化(MSADBO)算法,以实现最大功率点(MPP)的精确跟踪。该方法首先建立FBPV系统纵向倾角的动态方程,随后通过分岔图和相图分析验证其混沌特性。在此基础上,构建了考虑辐照度与组件倾角之间关系的动态数学模型,进而建立一个时变非线性模型,用于设计以发电功率和开关损耗为主要性能指标的EMPC控制器。MSADBO算法用于优化控制器的状态约束,从而提高优化过程的精度与效率,并确保控制的鲁棒性。在不同运行条件下进行的仿真结果表明,该方法在稳定功率输出和精确跟踪MPP方面具有显著有效性。与传统EMPC相比,所提方法的跟踪精度提高了1.5%–2%,功率波动降低了30%,验证了其优越性能,为未来FBPV系统并网研究奠定了基础。

English Abstract

Abstract The deployment of offshore floating bifacial photovoltaic (FBPV) systems is constrained by the inherent challenges posed by harsh marine environments, which induce chaotic movements and fluctuating power outputs . To address this issue, we propose the implementation of an improved Economic Model Predictive Control (EMPC) strategy in conjunction with a Modified Sine Algorithm Guided Dung Beetle Optimization (MSADBO) algorithm for the precise tracking of the maximum power point (MPP). The approach commences with the formulation of dynamic equations for the FBPV’s longitudinal tilt, followed by the confirmation of chaos through the utilization of bifurcation and phase diagrams . Subsequently, a dynamic mathematical model is constructed, taking into account the relationship between irradiance and the component’s tilt angle. Accordingly, a time-varying nonlinear model is formulated, which facilitates the design of an EMPC controller with power generation and switching losses as key performance indicators . The MSADBO algorithm optimizes the controller’s state constraints, thereby improving the accuracy and efficiency of the optimization process and ensuring control robustness. Simulations conducted under different operational conditions demonstrate the effectiveness of the method in stabilizing power output and accurately tracking the MPP. The proposed method shows 1.5 %–2 % better tracking precision and reduces power variation by 30 % compared to traditional EMPC, thereby validating its effectiveness and setting a stage for future research on FBPV grid integration.
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SunView 深度解读

该海上双面浮式光伏动态MPPT技术对阳光电源SG系列逆变器及海洋光伏应用具有重要价值。改进型EMPC结合MSADBO算法可提升1.5%-2%追踪精度并降低30%功率波动,可直接应用于SG逆变器的MPPT优化算法升级,特别适合海上漂浮电站等复杂工况。该非线性预测控制策略与阳光现有GFM/VSG控制技术结合,可增强ST储能系统在海上微网中的功率平抑能力。建议将混沌运动建模方法纳入iSolarCloud平台的预测性维护算法,提升海洋环境下光伏系统的智能运维水平。