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An efficient ramp rate and state of charge control for PV-battery system capacity firming

机译:高效的斜率和充电状态控制,可确保光伏电池系统容量的稳定

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This paper proposes an efficient ramp rate control scheme for capacity firming of an integrated Photovoltaic (PV) power system with battery energy storage. This scheme addresses one of the main limitations of PV systems, namely intermittency, making available energy to be non-dispatchable to the grid and cannot be forecasted on a day ahead basis. The paper also proposes a novel state of charge controller which monitors the energy storage State-Of-Charge and adjusts the battery charge and discharge rates so that in the event of a steep variation in the PV power, it doesn't over charge or deep discharges and continues to be available for the next cycle. The combined ramp rate and state of charge control achieves a smooth dispatchable PV profile, keeps the system loss at a minimum, while improving the system reliability and performance by preserving battery life. The controller can be implemented without affecting the normal PV system control and operation. The proposed firming concept has been theoretically explained and simulation results verifies the expected theoretical performance.
机译:本文提出了一种有效的斜坡率控制方案,用于具有电池储能功能的集成光伏(PV)电力系统的容量控制。该方案解决了光伏系统的主要局限性之一,即间歇性,使得可用能量无法分配给电网,并且无法在未来的一天进行预测。该论文还提出了一种新颖的充电状态控制器,该控制器可监视能量存储的充电状态并调整电池的充电和放电速率,从而在PV功率发生急剧变化的情况下,不会出现过充电或过深的情况。放电,并在下一个周期继续可用。斜坡速率和充电状态控制相结合,可实现平滑的可调度PV曲线,将系统损耗降至最低,同时通过保留电池寿命来提高系统可靠性和性能。该控制器可以在不影响正常光伏系统控制和操作的情况下实施。理论上解释了所提出的紧实概念,仿真结果验证了预期的理论性能。

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