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A robust hydro-thermal scheduling problem for a system integrated with wind resource

机译:风资源集成系统的鲁棒水热调度问题

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Daily hydro-thermal scheduling (HTS) problem, one of the most critical tasks in electric power system operations, faces new challenges as the system uncertainty increases dramatically due to the integration of time-varying resources, such as wind. To effectively address these challenges, we propose the formulation of the solution of a generalized HTS problem for a system integrated with wind resources. Given the pre-specified wind nodal power output information by intervals, the HTS problem solution is robust against all wind uncertainty. The generalized HTS problem integrates the detailed statement of hydroelectric resource, especially in the form of stored water in the reservoirs which couples the decision makings at consecutive time periods. Thus, the system operator can give a more precise scheduling result from the hydro resources for coping with the uncertainty caused by wind. The description of the problem is comprehensive, providing information on important operating considerations and constraints which need to be modeled in practice. The problem is modeled as a two-level mixed integer optimization problem and we develop a computationally tractable method for practical power systems. Numerical testing results based on the Northwest China Grid data back our conclusion effectively.
机译:每日水热调度(HTS)问题是电力系统运行中最关键的任务之一,由于风电等时变资源的整合,系统不确定性急剧增加,因此面临着新的挑战。为了有效应对这些挑战,我们建议为与风能资源集成的系统制定广义HTS问题的解决方案。给定间隔的预先指定的风节点功率输出信息,HTS问题解决方案可抵抗所有风的不确定性。广义HTS问题综合了水力资源的详细说明,特别是以水库中存储的水的形式,其在连续的时间段内与决策结合。因此,系统操作员可以从水力资源中获得更精确的调度结果,以应对由风引起的不确定性。问题的描述是全面的,提供了有关重要操作注意事项和约束条件的信息,需要在实践中对其进行建模。该问题被建模为两级混合整数优化问题,并且我们为实际的电力系统开发了一种可计算处理的方法。基于西北电网数据的数值测试结果有效地支持了我们的结论。

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