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Improving the network infeed accuracy of non-dispatchable generators with energy storage devices

机译:使用储能装置提高不可调度发电机的电网供电精度

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摘要

The power output of generators based on renewable energy sources is often difficult to predict due to the non-deterministic behaviour of the energy source. Particularly in the case of wind turbines this leads to unpredicted line loading and requires balancing energy, at relatively high costs, depending on market structures. Consequently, the income from the production from such non-dispatchable generators can be significantly reduced by the penalty costs incurred. This paper investigates the potential of operating an energy storage device in parallel with the non-dispatchable generator in order to compensate the inaccuracies of the forecasted infeed and to avoid infeed deviations. A time series based simulation methodology is discussed, suitable for any type of non-dispatchable generator. The methodology contains a procedure for simulating different forecast errors, applying an exponentially weighted moving average approach. Analysis procedures and system performance indices are introduced for the evaluation of the configuration's performance. The applicability is shown in two case studies, using measurement data from a wind turbine and from a photovoltaic system. Both case studies show that the suggested configuration considerably improves the reliability or dependability of the network infeed, in turn reducing the demand for balancing energy and back-up generation. The relation between forecast error magnitude and required energy capacity is identified and the coherence of the time series analysis is discussed.
机译:由于能源的不确定性,基于可再生能源的发电机的功率输出通常难以预测。特别是在风力涡轮机的情况下,这导致了不可预知的线路负载,并且需要根据市场结构以相对较高的成本平衡能量。因此,可以通过产生的罚款成本显着减少来自这种不可调度发电机的生产收入。本文研究了与不可分配发电机并联运行储能装置的潜力,以补偿预测的进给量的误差并避免进给量的偏差。讨论了一种基于时间序列的仿真方法,适用于任何类型的不可调度发电机。该方法包含采用指数加权移动平均法模拟不同预测误差的过程。引入了分析过程和系统性能指标,以评估配置的性能。在两个案例研究中显示了适用性,其中使用了来自风力涡轮机和光伏系统的测量数据。两种案例研究均表明,建议的配置大大提高了网络馈电的可靠性或可靠性,从而减少了平衡能量和备用发电的需求。确定了预测误差幅度与所需能量的关系,并讨论了时间序列分析的一致性。

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