Supply and demand control of distributed generators in a microgrid

T. Shimakage, J. Sumita, N. Uchiyama, T. Kato, Y. Suzuoki
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引用次数: 14

Abstract

Distributed generators (DGs) that use renewable energy sources have an unstable output and this can negatively affect existing electric power systems. To reduce this impact, we developed an energy control system for controlling the output from individual DGs that were installed in a microgrid. Controlling the DGspsila outputs enabled the power fluctuation at the point where the microgrid was connected to the existing power grid to be reduced. The microgrid was installed and operated in two separate locations for a total of 672 days. The actual DGs were photovoltaic power generation (PV) systems, fuel cells, and a NaS battery. We demonstrated that 99% of the power imbalance between the supply and demand over 10-, 15-, and 30-minute periods was within a range of plusmn3% under normal operating conditions when using our power control system. Furthermore, we demonstrated that, by using our power control system, the power flow fluctuation of the PV systems output at the grid connection point was smoothed.
微电网中分布式发电机的供需控制
使用可再生能源的分布式发电机输出不稳定,这可能对现有的电力系统产生负面影响。为了减少这种影响,我们开发了一种能量控制系统,用于控制安装在微电网中的单个dg的输出。控制DGspsila输出可以减少微电网与现有电网连接点的功率波动。微电网在两个不同的地点安装和运行了总共672天。实际的DGs是光伏发电(PV)系统、燃料电池和NaS电池。我们证明,在使用我们的电力控制系统时,在正常运行条件下,在10、15和30分钟的时间段内,99%的电力供需不平衡在±3%的范围内。此外,我们还证明,通过我们的功率控制系统,光伏系统在并网点的输出功率潮流波动得到了平滑。
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