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DEVELOPMENT OF A MONTE CARLO-BASED ECONOMIC OPTIMIZATION SCHEME FOR NUCLEAR HYBRID ENERGY SYSTEM POWER DISPATCH

机译:核混合能源系统电力调度的蒙特卡洛的经济优化方案的发展

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The concept of Nuclear-Renewable Hybrid Energy Systems (N-R HES) is meant to combine different energy technologies in synergistic ways to achieve a more secure and economical energy supply. In the present test-problem configuration, the N-R HES unit is composed of three electrical power-generating components, i.e. the Balance of Plant (BOP), the Secondary Energy Source (SES), and the Energy Storage (ES), and the Industrial Process (IP), which is devoted to hydrogen generation. The general problem addressed is finding the optimum economical dispatch (ED), i.e. the power outputs of each one of unit components (BOP, SES, ES) and the IP hydrogen production level that maximizes the unit profit by simultaneously meeting individual component constraints. Because of the need of modeling and simulating the different involved dynamics, the ensuing optimization problem is characterized by a very large number of solution variables. To ease the computational burden and to improve the path to a converged solution, a suitable Monte Carlo-based optimization algorithm which provides an initial guess for the optimal N-R HES power dispatch was developed and tested. A set of stochastic power scenarios for each one of the N-R HES unit components is sampled, and then for each one of them the corresponding value of a suitably defined cost function is evaluated. Once a sufficient number of power histories was simulated, the configuration ensuring the highest profit is selected as the optimal one. The component physical dynamics are represented through suitable ramp constraints, which considerably simplify the numerical solving. Finally, the initial results were presented.
机译:核可再生混合能源系统(N-R HES)的概念旨在将不同的能源技术与协同方式相结合,以实现更安全和经济的能源供应。在本试验问题配置中,NR HES单元由三个电力产生部件组成,即植物(BOP)的平衡,二次能源(SES)和能量存储(ES)和工业工艺(IP),其致力于氢气。解决的一般问题正在寻找最佳的经济调度(ED),即单位组件(BOP,SES,ES)和IP氢气生产水平的功率输出,通过同时满足各个组件限制来最大化单位利润。由于需要建模和模拟不同涉及的动态,因此随后的优化问题的特征在于非常大量的解决方案变量。为了简化计算负担并改善融合解决方案的路径,开发并测试了为最佳N-R HES功率调度提供初始猜测的合适的蒙特卡罗基优化算法。采样一组用于每个N-R HES单元组件的随机功率场景,然后针对它们中的每一个进行评估相应的定义成本函数的相应值。一旦模拟了足够数量的功率历史,选择确保最高利润的配置被选择为最佳的配置。组件物理动态通过合适的斜坡约束表示,其显着简化了数值求解。最后,提出了初步结果。

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