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Considering carbon emissions in economic dispatch planning for isolated power systems

机译:在隔离电力系统的经济调度计划中考虑碳排放

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By integrating simulated annealing and the interactive best-compromise approach, a method to determine economic dispatch in power systems, while accounting for carbon emissions, is proposed in this study. To satisfy load demands and operational constraints, traditional economic dispatches are determined by minimizing total power generation costs based on the power output of the generating units in a system. In the proposed method, carbon emissions are taken into consideration. A carbon dioxide (CO) equivalent model that accounted for the various fuel types (e.g., coal, oil, and natural gas) used in power generation was created. The correlation between power generation costs and carbon emission was determined according to CO emission equivalent tradeoff and incremental cost CO reduction curves. The proposed method was applied to the Taiwan Power Company system. The results indicated that the method was effective at determining the influence of CO emissions on power generation costs during off-peak, semi-peak, and peak hours, as well as daily load demands. The system allows economic and environmental benefits to be considered simultaneously.
机译:通过将模拟退火和交互式最佳妥协方法相结合,提出了一种在考虑碳排放的同时确定电力系统经济调度的方法。为了满足负载需求和操作约束,传统的经济调度是根据系统中发电机组的输出功率,通过将总发电成本降至最低来确定的。在提出的方法中,考虑了碳排放。创建了一个二氧化碳(CO)等效模型,该模型考虑了发电中使用的各种燃料类型(例如煤,石油和天然气)。根据CO排放当量折衷和增量成本CO减少曲线确定发电成本与碳排放之间的相关性。将该方法应用于台湾电力公司系统。结果表明,该方法可有效确定CO排放量对非高峰时段,半高峰时段和高峰时段以及每日负荷需求的发电成本的影响。该系统允许同时考虑经济和环境利益。

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