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Effect of optimal generation scheduling of compressed air energy storage and wind power generation on economic and technical issues

机译:压缩空气储能和风力发电的最优发电调度对经济和技术问题的影响

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High penetration of wind power increases the generation uncertainty in power systems. Large-scale energy storage systems, such as compressed air energy storage (CAES), can accommodate this uncertainty properly, if it is scheduled optimally. In this paper, a proposed stochastic AC-security constrained unit commitment (AC-SCUC) is performed considering CAES, wind power generation and thermal units, and a techno-economic assessment is conducted in the proposed stochastic methodology. A two-stage stochastic programming is employed to handle uncertainty of wind power generation. As the integration of CAES and wind power uncertainty affect voltage issue of power system, the techno-economic assessment is carried out in the proposed stochastic methodology to shed light on the effects of optimal generation scheduling on the static voltage stability. Due to its less computation cost, the wind power uncertainty is modeled using scenario-based approach. The AC-SCUC problem and CAES scheduling are considered as an optimization problem which is solved using mixed-integer non-linear programming (MINLP) approach. The proposed stochastic methodology is applied to a modified IEEE 30 bus test system.
机译:风电的高渗透率增加了电力系统中发电的不确定性。如果优化调度,则大型储能系统(例如压缩空气储能(CAES))可以适当地解决此不确定性问题。在本文中,考虑了CAES,风力发电和热力单元,提出了一种建议的随机AC-安全约束单位承诺(AC-SCUC),并在该建议的随机方法中进行了技术经济评估。采用两阶段随机规划来处理风力发电的不确定性。由于CAES的集成和风力发电的不确定性影响电力系统的电压问题,因此,在所提出的随机方法中进行了技术经济评估,以了解最优发电计划对静态电压稳定性的影响。由于其计算成本较低,因此可以使用基于情景的方法对风电不确定性进行建模。 AC-SCUC问题和CAES调度被认为是一种优化问题,它是使用混合整数非线性规划(MINLP)方法解决的。所提出的随机方法被应用于改进的IEEE 30总线测试系统。

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