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Application of battery-based energy storage in grid-connected wind farms in order to improve economical utilization

机译:基于电池的储能在并网风电场中的应用,以提高经济利用率

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In presence of wind farms in a power system, operators will encounter more complexity in system utilization than before, because of the stochastic and fluctuating nature of the wind farm output. The presence of some constraints in power systems utilization may cause some restrictions in wind energy injection to the power system. Therefore, wind farm utilization may become non-cost effective in presence of these constraints. Using energy storage systems (ESS) in wind farms will have positive effects on power system utilization, which depend on regional wind regime and hourly energy prices. In this research, a new method is proposed to change the direction of wind farms' capacity allocation studies towards increasing wind farms' capacity. In fact, in this study, the capacity of ESS and the wind farm hourly output power are determined in a way that wind farm total income in one year and its capacity factor are increased as much as possible. So, power system utilizers' tendency towards increasing wind power penetration in power system will be raised as total income and wind farm capacity factor increase. In this paper, particle swarm optimization (PSO) is applied to find optimal ESS capacity and hourly energy management. Results demonstrate that despite high cost of energy storage systems, by using the proposed method in energy management optimization, the total income from wind energy sales will increase. Also, these results acknowledge all justifications proposed towards increasing the wind farm capacity in primary planning studies.
机译:在电力系统中存在风电场的情况下,由于风电场输出的随机性和波动性,操作员将比以前遇到更多的系统利用率。电力系统利用中某些约束的存在可能导致向电力系统中注入风能的某些约束。因此,在存在这些限制的情况下,风电场的利用可能变得不合算。在风电场中使用储能系统(ESS)将对电力系统的利用率产生积极影响,这取决于地区的风力状况和每小时的能源价格。在这项研究中,提出了一种新方法来改变风电场容量分配研究的方向,以增加风电场的容量。实际上,在这项研究中,ESS的容量和风电场每小时的输出功率是通过使风电场一年的总收入及其容量因子尽可能增加的方式确定的。因此,随着总收入和风电场容量因子的增加,电力系统利用者增加其在电力系统中的风电渗透的趋势将增加。在本文中,应用粒子群优化(PSO)来找到最佳的ESS容量和每小时的能源管理。结果表明,尽管储能系统成本高昂,但通过使用所提出的方法进行能源管理优化,风能销售总收入将增加。同样,这些结果也证实了在初步规划研究中提出的增加风电场容量的所有理由。

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