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Demand Side Frequency Control Scheme in an Isolated Wind Power System for Industrial Aluminum Smelting Production

机译:工业铝冶炼隔离风电系统的需求侧频率控制方案。

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Reducing the fossil fuel consumption of aluminum smelting production, which consumes around 8% of electricity annually, is of great significance for China's energy sector. One possible solution is to integrate wind power as supply for aluminum smelter loads. Based on this background, this paper studies an actual industrial case—an isolated power system for aluminum production with integrated wind penetration levels as high as 30%. However, due to the integration of wind power, frequency stability issues become critical in such a system. Therefore, a demand-side frequency control scheme responding to frequency deviations of the system is proposed in this paper to control the load power of aluminum smelters. The scheme is designed based on the relationship between the DC voltage supply for aluminum smelting loads and the commutation voltage drop which can be adjusted by changing the inductance value of the saturable reactors. Finally, simulations under both N-1 and N-2 contingency scenarios demonstrate the effectiveness of the proposed control scheme considering various wind power outputs.
机译:减少铝冶炼生产的化石燃料消耗(每年消耗约8%的电力),对中国的能源行业具有重要意义。一种可能的解决方案是将风能整合为铝冶炼厂负荷的供应。在此背景下,本文研究了一个实际的工业案例-铝生产的隔离式电源系统,其综合风渗透率高达30%。然而,由于风力的集成,在这种系统中频率稳定性问题变得至关重要。因此,本文提出了一种响应系统频率偏差的需求侧频率控制方案,以控制铝冶炼厂的负荷功率。该方案是根据铝熔炼负荷的直流电压供应与换向电压降之间的关系设计的,该关系可通过改变可饱和电抗器的电感值来调节。最后,在N-1和N-2意外情况下的仿真证明了考虑各种风力输出的拟议控制方案的有效性。

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