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Effective modeling and resolution of generation-dependent ramp rates for unit commitment

机译:有效地建模和解决与发电量有关的机组承诺的爬升率

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The ramp rate of a combined cycle (CC) unit varies significantly with its generation level. In current unit commitment (UC) formulations, ramp rates of CC units are usually modeled as constants. Reserve capabilities may thus be significantly overestimated, causing serious consequences when reserves are needed. When generation-dependent ramp rates are considered, the performance of existing approaches decreases drastically and is not stable. This paper is on effective modeling and resolution of generation-dependent ramp rates in look-ahead UC problems. New ramp and reserve capability functions are established, and the UC formulation is further improved based on existing tight single-unit formulations. Testing results by using branch-and-cut (B&C) show that the solution quality and computational efficiency are improved and the performance is stable. These modifications can be directly incorporated in existing solvers. To exploit the tightened single-unit formation, the problem is also solved by the integration of our recent decomposition and coordination approach with B&C. Testing results show that time-consuming branching operations are much reduced as compared with those of B&C and the coordination is effective, demonstrating great potentials for complicated mixed-integer linear programming problems.
机译:联合循环(CC)装置的斜率随其发电水平而有很大变化。在当前的单位承诺量(UC)公式中,CC单位的倾斜率通常建模为常数。因此,储备能力可能会大大高估,从而在需要储备时造成严重后果。当考虑与发电量有关的斜坡率时,现有方法的性能会急剧下降且不稳定。本文是关于在前瞻性UC问题中有效的建模和解决与发电相关的斜坡率的问题。建立了新的坡道和后备能力功能,并在现有紧密单单元方案的基础上进一步改进了UC方案。使用分支剪切(B&C)进行的测试结果表明,解决方案质量和计算效率得到了提高,并且性能稳定。这些修改可以直接合并到现有的求解器中。为了利用收紧的单单元结构,还可以通过将我们最近的分解和协调方法与B&C集成来解决该问题。测试结果表明,与B&C相比,减少了耗时的分支操作,并且协调有效,证明了解决复杂的混合整数线性规划问题的巨大潜力。

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