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Unit commitment with continuous-time generation and ramping trajectory models

机译:具有连续时间生成和渐变轨迹模型的单位承诺

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Summary form only given. There is increasing evidence of shortage of ramping resources in the real-time operation of power systems. To explain and remedy this problem systematically, in this paper we take a novel look at the way the day-ahead unit commitment (UC) problem represents the information about load, generation and ramping constraints. We specifically investigate the approximation error made in mapping of the original problem, that would decide the continuous-time generation and ramping trajectories of the committed generating units, onto the discrete-time problem that is solved in practice. We first show that current practice amounts to approximating the trajectories with linear splines. We then offer a different representation through cubic splines that provides physically feasible schedules and increases the accuracy of the continuous-time generation and ramping trajectories by capturing sub-hourly variations and ramping of load in the day-ahead power system operation. The corresponding day-ahead UC model is formulated as an instance of mixed-integer linear programming (MILP), with the same number of binary variables as the traditional UC formulation. Numerical simulation over real load data from the California ISO demonstrate that the proposed UC model reduces the total day-ahead and real-time operation cost, and the number of events of ramping scarcity in the real-time operations.
机译:仅提供摘要表格。越来越多的证据表明,在电力系统的实时运行中,缺乏可扩展的资源。为了系统地解释和纠正此问题,本文以新颖的方式研究了提前一天机组承诺(UC)问题表示有关负荷,发电和爬坡约束的信息的方式。我们专门研究了在映射原始问题时所产生的近似误差,该误差将决定连续发电和定额发电机组的运行轨迹到实际解决的离散时间问题上。我们首先表明,当前的实践相当于用线性样条曲线近似轨迹。然后,我们通过三次样条曲线提供不同的表示形式,该三次样条曲线提供了物理上可行的时间表,并通过捕获日前电力系统运行中的亚小时变化和负载斜率来提高连续时间发电和斜率轨迹的准确性。相应的日前UC模型被公式化为混合整数线性规划(MILP)的实例,二进制变量的数量与传统UC公式相同。对来自加利福尼亚州ISO的实际载荷数据的数值模拟表明,所提出的UC模型减少了日前和实时运行的总成本,并减少了实时运行中出现稀缺事件的次数。

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