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A New Technique for Simulating the Operation of Multiple Assigned-Energy Generating Units Suitable for Use in Generation System Expansion Planning Models

机译:模拟适用于发电系统扩展计划模型的多个分配能源发电机组运行的新技术

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A new technique is presented for probabilistically simulating the operation of power systems which includes multiple assigned-energy units (e.g., conventional hydroelectric and, under certain circumstances, both nuclear units and cogeneration units). Within the context of probabilistic simulation, the new technique is completely rigorous. Statistical cumulants are used to represent equivalent load. The new technique has been successfully applied in an advanced technology evaluation and expansion model???the TVA TARANTULA model. This application has been accomplished with-out sacrificing other simulation capabilities such as: random partial outages, maintenance based on LOLP and load forecast uncertainty, and the ability to aggregate (without loss of rigor) groups of many small units for the purpose of computational expediency. A description is provided of tests performed to evaluate the new technique. Probabilistic simulation is a load duration oriented technique for simulating the operation of electric power systems. The technique is particularly amenable both to power systems consisting entirely of demand-energy units and to rigorous simulation of the random forced outage effects of these units. In this paper a demand-energy unit is defined as any generating unit which serves consumer load upon demand???provided the unit is available to do so and the dispatcher calls on it to operate. Demand-energy units include coalfired units, oil-fired units, gas turbines, and nuclear units early in the refueling cycle. Certain types of generating resources are unable to serve load upon demand (even if they are available to do so) because the supply of energy is limited.
机译:提出了一种用于概率模拟包括多个分配能量单元(例如,常规水力发电单元,在某些情况下还包括核单元和热电联产单元)的电力系统的运行的新技术。在概率模拟的背景下,新技术是完全严格的。统计累积量用于表示等效负载。新技术已成功地应用于先进的技术评估和扩展模型——TVA TARANTULA模型。无需牺牲其他仿真功能即可完成此应用程序,例如:随机局部中断,基于LOLP和负载预测不确定性的维护,以及为了计算方便而聚集(不损失严谨性)许多小单元的能力。提供了为评估新技术而执行的测试的描述。概率模拟是一种面向负荷持续时间的技术,用于模拟电力系统的运行。该技术特别适用于完全由需求能源单元组成的电力系统,以及对这些单元的随机强制中断效应的严格模拟。在本文中,需求能源单元被定义为根据需要为用户负载供电的任何发电单元,前提是该单元可以这样做,而调度员则要求其运行。在加油周期初期,需求能源单位包括燃煤单位,燃油单位,燃气轮机和核能单位。某些类型的发电资源无法满足需求的负载(即使可以使用),因为能源的供应受到限制。

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