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Delta Power Control Strategy for Multi-String Grid-Connected PV Inverters

机译:多串并网光伏逆变器的Delta功率控制策略

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摘要

With a still increasing penetration level of grid-connected PV systems, more advanced active power control functionalities have been introduced in certain grid regulations. A delta power constraint, where a portion of the active power from the PV panels is reserved during operation, is required for grid support (e.g., during frequency deviation). In this paper, a cost-effective solution to realize delta power control for grid-connected PV systems is presented, where the residential/commercial multi-string PV inverter configuration is adopted. This control strategy is a combination of Maximum Power Point Tracking (MPPT) and Constant Power Generation (CPG) modes. In this control scheme, one PV string operating in the MPPT mode estimates the available power, while the other PV strings regulate the total PV power by the CPG control strategy in such a way that the delta power constraint for the entire PV system is achieved. Simulations and experiments have been performed on a 3-kW single-phase grid-connected PV system. The results have confirmed the effectiveness of the delta power control strategy, where the power reserve according to the delta power constraint is achieved under several operating conditions.
机译:随着并网光伏系统的普及程度不断提高,某些电网法规中引入了更高级的有功功率控制功能。电网支持(例如,在频率偏差期间)需要使用增量功率约束,其中在操作过程中会保留来自光伏面板的一部分有功功率。本文提出了一种经济有效的解决方案,用于实现并网光伏系统的增量功率控制,其中采用了住宅/商业多串光伏逆变器配置。此控制策略是最大功率点跟踪(MPPT)和恒定功率产生(CPG)模式的组合。在该控制方案中,一个以MPPT模式运行的PV串估计可用功率,而另一个PV串通过CPG控制策略来调节总PV功率,以实现整个PV系统的增量功率约束。在3kW单相并网光伏系统上进行了仿真和实验。结果证实了增量功率控制策略的有效性,其中根据增量功率约束的功率储备是在几种运行条件下实现的。

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