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Wind-thermal unit commitment with mixed-integer linear EENS and EEES formulations

机译:采用混合整数线性EENS和EEES公式的风热机组承诺

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In this work, day-ahead wind-thermal unit commitment (WTUC) undertaken by an independent system operator (ISO) in deregulated power systems is investigated. Expected energy not served (EENS) and expected energy excess served (EEES) of the system due to the unavailability of thermal generators as well as output uncertainties of wind generators are evaluated. The presented non-linear EENS and EEES are further formulated as linear functions of the integer and continuous decision variables in the unit commitment problem for computation efficiency. Three alternative criteria are proposed for the determination of upward and downward spinning reserve requirements of the system, which are the probabilistic criteria, the cost-benefit optimization criteria, and the hybrid criteria. The WTUC is modeled as mixed-integer linear programming (MILP) problem, and solved using available MILP techniques. The WTUC formulations have been tested on a 26-generator system which has 3 wind generators with associated transmission networks. The simulation results with the three alternative spinning reserve determination criteria are discussed.
机译:在这项工作中,研究了由独立系统运营商(ISO)在解除管制的电力系统中承担的日前风热机组承诺(WTUC)。评估了由于热力发电机的不可用以及风力发电机的输出不确定性而导致的系统的预期未服务能量(EENS)和预期服务过剩能量(EEES)。提出的非线性EENS和EEES在单位承诺问题中被进一步公式化为整数和连续决策变量的线性函数,以提高计算效率。为确定系统的向上和向下旋转储备要求,提出了三个替代标准,分别是概率标准,成本效益优化标准和混合标准。 WTUC被建模为混合整数线性规划(MILP)问题,并使用可用的MILP技术进行了求解。 WTUC配方已在26发电机系统上进行了测试,该系统具有3台带有相关传输网络的风力发电机。讨论了三种备用纺纱储备确定标准的模拟结果。

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