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Chance-constrained programming for day-ahead scheduling of variable wind power amongst conventional generation mix and energy storage

机译:机会约束编程,用于常规发电混合和能量存储之间的可变风电的提前调度

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摘要

This study presents a day-ahead scheduling of a generation portfolio incorporating large shares of intermittent wind generation. The scheduling utilises the cycling of conventional generation as well as the dispatch of energy storage (ES) to mitigate the impact of net load ramps. Inherent system flexibility, expressed as a chance constraint, is quantified in terms of ramping capability and operating reserves of conventional generation and ES. The flexibility chance constraint is then factorised into a set of linear deterministic inequalities, to preserve the mixed-integer linear programming structure of the resulting problem. Numerical simulations are performed and results are analysed for IEEE 24-bus and 118-bus systems. Test results show that implementation of ES improves the flexibility of the system, in terms of alleviation of the cycling of thermal generation as well as wind generation curtailment.
机译:这项研究提出了包含大量间歇性风力发电的发电投资组合的提前安排。调度利用常规发电的循环以及能量存储(ES)的调度来减轻净负载斜坡的影响。固有的系统灵活性(表示为机会约束)通过常规发电和ES的提升能力和运营储备来量化。然后将灵活性机会约束分解为一组线性确定性不等式,以保留所得问题的混合整数线性规划结构。对IEEE 24-bus和118-bus系统进行了数值模拟并分析了结果。测试结果表明,ES的实施在减轻热循环和减少风力发电方面提高了系统的灵活性。

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