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Integrated Electric Power/Water Distribution System Modeling and Control Under Extreme Mega Drought Scenarios

机译:极端兆干旱场景下集成电力/水分配系统建模与控制

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This work considers the operation of the electric power system (EPS) in coordination with the water distribution system (WDS) during extreme operating condition scenarios. The interdependencies are captured by modeling the main dependency of the WDS on the EPS, power for WDS pumps, as well as the main dependency of the EPS on the WDS, the need for cooling water for conventional thermoelectric generation, in simulation. The extreme scenarios include studying the effect of droughts (water shortages) in the WDS and electrical power outages of WDS pumping stations in the EPS. Appropriate network models and mathematical formulations for optimizing control of the operation in the power system with consideration of the present operating conditions in the WDS are presented. These include a novel optimal power flow model for unit dispatch, a model for systematically derating thermoelectric generation during periods of droughts as well as a method for adjusting the cooling water demands of that generation within the WDS. The implementation of these policies is seen to increase the duration for which conventional thermoelectric generation is available for dispatch during such extreme conditions.
机译:这项工作考虑了在极端操作条件方案期间与水分配系统(WDS)协调的电力系统(EPS)的运行。通过对WDS对EPS的主要依赖性建模,WDS泵的电力以及EPS对WDS上的主要依赖性来捕获相互依存性,以及用于常规热电产生的冷却水的主要依赖性。极端情景包括研究WDS(水资源短缺)在EPS中WDS泵站的电力驱动的影响。提出了适当的网络模型和用于优化电力系统中操作的控制的数学制剂,考虑到WDS中的当前操作条件。这些包括用于单位调度的新颖最佳功率流模型,一种用于在干旱期间系统地降低热电产生的模型以及调整WDS内发电的冷却水需求的方法。这些政策的实施是可以在这种极端条件下增加传统热电生物可用于调度的持续时间。

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