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A Cost-Effective Power Ramp-Rate Control Strategy for Single-Phase Two-Stage Grid-Connected Photovoltaic Systems

机译:单相两级并网光伏系统的低成本功率斜坡率控制策略

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摘要

In the case of a wide-scale adoption of grid-connected Photovoltaic (PV) systems, more fluctuated power will be injected into the grid due to the intermittency of solar PV energy. A sudden change in the PV power can potentially induce grid voltage fluctuations, and thus challenge the stability of the grid. Hence, this sudden active power change resulting in a large power ramp-rate should be avoided in practice. In fact, some grid regulations also released strict rules on active power ramp-rates for PV systems. This paper proposes a cost-effective control strategy to limit the power ramp-rate for two-stage grid-connected PV systems. The main concept of the proposed scheme is to modify the maximum power point tracking algorithm in such a way to regulate the PV power at the left side of the maximum power point curve. As a consequence, the power ramp-rate can be controlled according to the set-point. Experiments conducted on a 3-kW single-phase two-stage grid-connected PV system have verified that the proposed solution can accomplish fast dynamics, high accuracy, and high robustness in the power ramp-rate control for PV systems.
机译:在大规模采用并网光伏(PV)系统的情况下,由于太阳能PV能量的间歇性,更多波动的功率将注入到电网中。 PV功率的突然变化可能会引起电网电压波动,从而挑战电网的稳定性。因此,在实践中应避免这种突然的有功功率变化导致大的功率斜率。实际上,一些电网法规还发布了有关光伏系统有功功率斜率的严格规则。本文提出了一种经济有效的控制策略,以限制两级并网光伏系统的功率斜率。提出的方案的主要概念是修改最大功率点跟踪算法,以调节最大功率点曲线左侧的PV功率。结果,可以根据设定点控制功率斜率。在3 kW单相两级并网光伏系统上进行的实验已经证明,该解决方案可以在光伏系统的功率斜率控制中实现快速动态,高精度和高鲁棒性。

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