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High-Performance Photovoltaic Constant Power Generation Control With Rapid Maximum Power Point Estimation

机译:具有快速最大功率点估计的高性能光伏恒发电控制

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Photovoltaic (PV) constant power generation (CPG) control is regarded as an advanced active power control by limiting the maximum feed-in power in order to avoid the adverse impacts of high-penetration PV systems such as overloading and overvoltage. Conventional CPG strategies show obvious limitations in terms of the dynamics response, oscillations during the steady state, and the estimation speed of limited power points (LPPs). In this article, a novel CPG control with the rapid approach to LPPs is proposed with the estimation of maximum power point (MPP), which guarantees fast converging speed in response to rapid changes in environmental conditions and low power oscillations for the steady state. Specifically, the proposed control allocates the operating point at the left-hand side of the MPP, which can not only avoid the instability issue but also simplify the MPP and LPP estimation according to the single-diode PV equivalent model. Furthermore, based on the estimated available power $P_{m avi}$ , the proposed CPG control contributes a direct solution in approaching the region around LPP or MPP, which improves the converging speed under environmental-changing conditions. Thus, regardless of the changes in irradiance or temperature, high-performance and reliable operation are ensured by switching the maximum power point tracking mode and CPG mode smoothly. The proposed control can be directly applied for the existing PV system and no additional hardware devices such as irradiance sensors are required, which is cost effective. A systematic comparison of the proposed control with other advanced CPG strategies was made under various scenarios and the advantages of the proposed control were validated experimentally.
机译:光伏(PV)恒发发电(CPG)控制被认为是通过限制最大进料功率的高级有源功率控制,以避免高渗透光伏系统(例如过载和过电压)的不利影响。传统的CPG策略在动力学响应,稳定状态下的振荡和有限功率点(LPPS)的估计速度方面具有明显的限制。在本文中,提出了一种具有快速接近LPP的CPG控制,估计最大功率点(MPP),这保证了响应于环境条件的快速变化和稳态的低功耗振荡的快速收敛速度。具体地,所提出的控制将MPP左侧的操作点分配,这不仅可以避免不稳定性问题,而且还可以根据单二极管PV等效模型简化MPP和LPP估计。此外,基于估计的可用电源<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/ xlink“> $ p _ { rm avi} $ ,所提出的CPG控制有助于直接解决LPP或MPP的区域,这提高了环境变化条件下的会聚速度。因此,无论辐照度或温度的变化如何,通过平滑地切换最大功率点跟踪模式和CPG模式,确保了高性能和可靠的操作。所提出的控制可以直接应用于现有的PV系统,并且不需要诸如辐照传感器的额外硬件设备,这是成本效益的。在各种情况下制定了与其他高级CPG策略的建议控制的系统比较,并通过各种情况进行了拟议控制的优势。

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