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Stochastic Security Constrained Unit Commitment with variable-speed pumped-storage Hydropower Plants

机译:变速抽水蓄能电站的随机安全约束机组承诺

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The Pumped Hydro Storages (PHSs) equipped with variables speed drives have several advantages, namely: i) power regulation in pumping mode, ii) extended operating range, iii) higher efficiency in turbine mode. Such flexible operation of the PHS units ensures capability of the PHS to provide the frequency control reserves even during the pumping mode. It may lead to increased revenues in the electricity market conditions. It is important to quantify the benefits of PHS, especially variable-speed ones. This paper proposes a Stochastic Security Constrained Unit Commitment (SSCUC) model which takes into account different models of pumped hydro units. Different energy and reserve provision models are considered for fixed-speed and variable-speed units in the generating and pumping modes. The presented day-ahead SSCUC problem considers the optimization of energy and reserves costs. The problem is solved using Benders decomposition approach, for which the master problem solves the unit commitment and the sub-problems ensure the feasibility of the solution for the base operating point and for a set of dedicated scenarios. The set of scenarios includes the base operating point, contingencies (i.e. N-1 criterion), and stochasticity of demand and renewable injections. The proposed formulation is successfully tested on IEEE RTS 24-bus system.
机译:配备有变速驱动器的抽水蓄能电站(PHS)具有几个优点,即:i)抽水模式下的功率调节; ii)扩展的工作范围; iii)涡轮机模式下的更高效率。 PHS单元的这种灵活操作可确保PHS甚至在泵送模式期间也能够提供频率控制储备的能力。这可能导致电力市场条件下的收入增加。重要的是量化PHS的好处,尤其是变速的PHS的好处。本文提出了一种随机安全约束单位承诺(SSCUC)模型,该模型考虑了抽水机组的不同模型。对于发电和抽水模式下的定速和变速单元,考虑了不同的能量和储备供应模型。当前提出的SSCUC问题考虑了能源和储备成本的优化。使用Benders分解方法解决了该问题,对于该问题,主要问题解决了单元承诺,子问题确保了针对基本操作点和一组专用方案的解决方案的可行性。场景集包括基本操作点,突发事件(即N-1标准)以及需求和可再生注入的随机性。提议的公式已在IEEE RTS 24总线系统上成功测试。

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