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Techno-economic benefits deriving from optimal scheduling of a Virtual Power Plant: Pumped hydro combined with wind farms

机译:技术经济效益从虚拟电厂的最佳调度中获取:与风电场的泵浦水电联合

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Wind and solar are renewable sources characterized by a great potential but a variable and unpredictable nature. Characteristics that provoke mismatch between power supply and demand which in turns are the source of network control issues. Problems manageable with the installation of large-scale energy storage like Pumped Hydro Energy Storage (PHES). To this purpose, the paper presents a techno-economic analysis for assessing the benefits deriving from the hybridization of a seawater PHES (sPHES) plant with an in-operation wind farm. Plants work as a Virtual Power Plant (VPP) instead of two separate unit. The hybridization aims to avoid the unbalances of the wind farm, having negative impact on both the grid and the wind farm owner itself. The unbalances cause unpredictable deviations from the predicted production and, hence, power production fluctuations faced by the grid with curtailments and/or calls in operation of fossil-fuelled power plants. A VPP techno-economic optimization on a daily bases is performed using the ASD-PSO algorithm while the optimization aim is the revenue maximization. Results show that a VPP composed by a sPHES and a wind farm and with a single owner, is able to manage the wind farm production, improving the revenue of 6.8% compared to plants acting separately on the market. The VPP approach is also convenient in the case of a joint venture between the plants owners. But, in this case, the revenue is increased only of 0.4% compared to plants working separately. Finally, results also highlight that, in the Italian electricity market, a sPHES plant alone is not able to generate sufficient revenue to guarantee a reasonable payback time while coupling it with a wind farm increases incomes and working days and avoid cost and grid issues in managing the unpredictable wind farm production.
机译:风和太阳能是可再生能源,其特征在于潜在的潜力,但具有可变和不可预测的性质。旨在在供电和需求之间取出不匹配的特性,这反过来是网络控制问题的源泉。随着泵送水力储能(PHES)的大规模储能,可以易于使用问题。为此目的,本文提出了一种技术经济学分析,用于评估海水手表(Shibhes)植物的杂交与运作内风农场的益处。植物作为虚拟电厂(VPP)而不是两个单独的单位。杂交旨在避免风电场的不平衡,对网格和风电场主人本身产生负面影响。不平衡导致与预测的生产不可预测的偏差,因此,网格面临的电网面临的电力产生波动与化石燃料发电厂的运行中的缩减和/或呼叫。在日常基地上使用ASD-PSO算法进行VPP技术经济优化,而优化目标是收入最大化。结果表明,由肖特和风电场和单个所有者组成的VPP能够管理风电场生产,与市场上单独行动的植物相比,提高了6.8%的收入。 VPP方法在植物所有者之间的合资方面也是方便的。但是,在这种情况下,与单独工作的植物相比,收入增加0.4%。最后,结果也强调,在意大利电力市场中,单独的丝绸工厂无法产生足够的收入,以保证合理的投资回收效时间,同时将其与风电场耦合,增加收入和工作日,并避免成本和网格问题在管理中不可预测的风电场生产。

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