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首页> 外文期刊>Generation, Transmission & Distribution, IET >Double-sided bidding strategy for power suppliers and large buyers with amalgamation of wind and solar based generation in a modern energy market
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Double-sided bidding strategy for power suppliers and large buyers with amalgamation of wind and solar based generation in a modern energy market

机译:在现代能源市场中,将风能和太阳能发电合并的电力供应商和大买家的双面投标策略

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摘要

The deployment of renewable energy sources has been rapidly increasing due to environmental constraints but renewable electricity suppliers face an inevitable problem of uncertainty which is caused by the intermittent nature of renewable sources. In real-time operation, compromises have been made in cost and power to balance the power which reduces supplier benefits. Therefore, the functions of Weibull and Beta distribution of probability are used to handle the adverse impact of wind speed uncertainty and solar irradiation, respectively, and scenarios are reduced using the forward-reduction algorithm. Moreover, to measure the deviation of renewable power, underestimation and overestimation cost functions are utilised. This study proposes a suitable double-sided strategic bidding problem as a multi-objective optimisation problem to maximise the profits of suppliers and buyers to minimise uncertainty of rivals and renewable power. The formulated problem is solved by Technique for Order of Preference by Similarity to Ideal Solution along with Gravitational Search Algorithm, and simulation results are obtained in absence and presence of both solar and wind power on IEEE standard 30-bus and 57-bus test systems. The obtained results prove the suitability of the proposed bidding strategy in the presence of uncertainty of solar and wind power.
机译:由于环境的限制,可再生能源的使用已迅速增加,但是可再生电力供应商面临不可避免的不确定性问题,这是由可再生能源的间歇性引起的。在实时操作中,已经在成本和功率上做出折衷以平衡功率,这降低了供应商的利益。因此,使用威布尔函数和Beta概率分布函数分别处理风速不确定性和太阳辐射的不利影响,并使用正向缩减算法减少了场景。此外,为了衡量可再生能源的偏差,使用了低估和高估成本函数。这项研究提出了一个合适的双面战略投标问题,作为一个多目标优化问题,以使供应商和购买者的利润最大化,从而使竞争对手和可再生能源的不确定性最小化。通过类似于理想解决方案的优先顺序技术和引力搜索算法解决了提出的问题,并且在IEEE标准30总线和57总线测试系统上,在不存在和不存在太阳能和风能的情况下获得了仿真结果。获得的结果证明了在太阳能和风力发电存在不确定性的情况下所提出的投标策略的适用性。

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