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Synergetic operation of photovoltaic and hydro power stations on a day-ahead energy market

机译:在前方的能源市场上的光伏和水力发电站的协同运行

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摘要

Hydropower has huge potential for a technically feasible and economically justified integration of variable, renewable energy sources with the power system. On the other hand, the operational intricacies of hydropower stations with a reservoir are limited by various constraints. Many previous works addressed the idea of solar-hydro resources complementarity, optimal sizing of such systems or their optimal dispatch. However, no one has ever established such a system in a highly competitive energy market with strongly fluctuating energy prices. Therefore, in this paper, we analyse the potential operation of a photovoltaic-hydro (PV-hydro) hybrid power station on a day-ahead electricity market. Due to its relatively small size such a station can be considered on the market as a price taker. The mathematical model which is used takes into consideration the irradiation and inflow uncertainty. A bidding strategy is created; based on the forecasted availability of solar and hydro energy during the day. The electricity prices on the market are taken from historical data and the optimized bidding strategy which is the repeatable for each day of the year. The operation of solar and hydropower stations on the day-ahead market as independent power stations is used as a benchmark for the hybrid system. The results of our analysis are promising and indicate a 5% increase of revenue for a joint operation (comparing to independent operations) providing the energy price increases by 3% per year. The hybrid system not only provides a greater profit to the owner, but also improves the small water retention during the hot period in summer. Over the whole year, the average monthly reservoir state of filling is greater than 73%. In the joint operation mode, the capacity factors of both sources are kept on a relatively high level of no less than 95% of their initial values based on resources availability.
机译:水电能力在技术上可行和经济地与电力系统的可变可再生能源集成有巨大的潜力。另一方面,具有储存器的水电站的操作复杂性受到各种约束的限制。许多以前的作品解决了太阳能资源互补的想法,最佳尺寸的这种系统或其最佳派遣。然而,没有人在竞争激烈的能源市场中建立了这种系统,能源价格强烈波动。因此,在本文中,我们分析了在前方电力市场上的光伏 - 水电(PV-Hydro)混合动力电台的潜在运行。由于其相对较小的尺寸,这样的站可以考虑市场作为价格接受者。使用的数学模型考虑了辐照和流入不确定性。创建了竞标策略;基于白天的预测太阳能和水电能的可用性。市场上的电价来自历史数据和优化的招标策略,这是一年中每一天的重复性。作为独立发电站的日前市场上的太阳能和水电站的运行用作混合系统的基准。我们分析的结果是有前途的,并表明联合行动的收入增长5%(与独立业务相比),提供能源价格每年增加3%。混合系统不仅为所有者提供了更大的利润,而且还可以提高夏季热水期间的小水保留。一年四季,平均月灌装灌浆状态大于73%。在联合操作模式下,基于资源可用性,两个来源的容量因素保持在相对高的不低于95%的初始值。

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