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A Control Methodology and Characterization of Dynamics for a Photovoltaic (PV) System Interfaced With a Distribution Network

机译:与配电网对接的光伏(PV)系统的动力学控制方法和表征

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This paper proposes a control strategy for a single-stage, three-phase, photovoltaic (PV) system that is connected to a distribution network. The control is based on an inner current-control loop and an outer DC-link voltage regulator. The current-control mechanism decouples the PV system dynamics from those of the network and the loads. The DC-link voltage-control scheme enables control and maximization of the real power output. Proper feedforward actions are proposed for the current-control loop to make its dynamics independent of those of the rest of the system. Further, a feedforward compensation mechanism is proposed for the DC-link voltage-control loop, to make the PV system dynamics immune to the PV array nonlinear characteristic. This, in turn, permits the design and optimization of the PV system controllers for a wide range of operating conditions. A modal/sensitivity analysis is also conducted on a linearized model of the overall system, to characterize dynamic properties of the system, to evaluate robustness of the controllers, and to identify the nature of interactions between the PV system and the network/loads. The results of the modal analysis confirm that under the proposed control strategy, dynamics of the PV system are decoupled from those of the distribution network and, therefore, the PV system does not destabilize the distribution network. It is also shown that the PV system dynamics are not influenced by those of the network (i.e., the PV system maintains its stability and dynamic properties despite major variations in the line length, line X/R ratio, load type, and load distance from the PV system).
机译:本文提出了一种与配电网相连的单级三相光伏(PV)系统的控制策略。该控制基于内部电流控制回路和外部DC-link电压调节器。电流控制机制使光伏系统的动力与网络和负载的动力分离。直流母线电压控制方案可控制和最大化有功功率输出。建议对电流控制回路采取适当的前馈动作,以使其动力学独立于系统其余部分。此外,为直流母线电压控制回路提出了一种前馈补偿机制,以使光伏系统动力学不受光伏阵列非线性特性的影响。反过来,这允许针对各种运行条件设计和优化光伏系统控制器。还对整个系统的线性模型进行模态/灵敏度分析,以表征系统的动态特性,评估控制器的鲁棒性,并确定光伏系统与网络/负载之间相互作用的性质。模态分析的结果证实,在所提出的控制策略下,光伏系统的动力与配电网络的动力是分离的,因此,光伏系统不会使配电网络不稳定。还显示了光伏系统的动力学不受网络动力学的影响(即,尽管线长,线X / R比,负载类型和距负载的距离有很大变化,但光伏系统仍保持其稳定性和动态特性。 PV系统)。

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