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A Stochastic Optimization Formulation of Unit Commitment With Reliability Constraints

机译:具有可靠性约束的机组组合随机优化公式。

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摘要

This paper proposes a new formulation for a stochastic unit commitment (UC) problem that incorporates two major and common sources of uncertainty in short-term generation scheduling, namely, unavailability of generators and load uncertainty. The objective is to minimize operating cost and expected loss of load cost subject to reliability constraints in terms of loss of load probability. The problem is first formulated as a two-stage recourse model in stochastic programming framework where generator unavailability is expressed by a discrete set of outage scenarios and system demand is set to be a nominal value in power balance equations. Then, load uncertainty is represented as a continuous random variable in loss of load probability constraint, which is approximated by a mixed-integer piecewise linear function and integrated to the second stage problem. As a result, the UC problem has a much smaller dimension as compared to the original two-stage recourse model. The proposed formulation can be solved in a timely manner even though the formulation requires some extra binary decision variables. Although loss of load probability constraint is approximated in the optimization problem, simulation results show that the optimal solutions yield desired reliability performance. Several case studies are conducted to examine the impact of reliability requirements and system uncertainties on UC decisions.
机译:本文提出了一种针对随机单位承诺(UC)问题的新公式,该问题在短期发电调度中纳入了两个主要且常见的不确定性来源,即发电机不可用和负荷不确定性。目的是在可靠性方面受负载限制损失的影响,将运营成本和预期的负载损失损失降至最低。首先在随机编程框架中将问题表述为两阶段追索模型,其中发电机的不可用性由一组离散的停电场景表示,而系统需求在功率平衡方程中设置为标称值。然后,将负载不确定性表示为负载概率约束中的连续随机变量,该变量由混合整数分段线性函数近似并集成到第二阶段问题中。结果,与原始的两阶段追索权模型相比,UC问题的维度要小得多。即使该公式需要一些额外的二进制决策变量,也可以及时解决该公式。尽管在优化问题中近似于损失负载概率约束,但仿真结果表明,最佳解决方案可产生所需的可靠性能。进行了一些案例研究,以检查可靠性要求和系统不确定性对UC决策的影响。

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