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Importance of hourly multi-bus unit commitment models in the context of high adoption of variable renewable energies: A chilean example

机译:在大量采用可变可再生能源的情况下,每小时多总线单位承诺模型的重要性:智利的一个例子

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The increasing levels of Variable Renewable Energies (VRE) require additional levels of flexibility in present power systems due to their intermittency and the resulting needs of reserve for increasing/reducing the generation with enough speed to maintain the system balance. In this context, the traditional long-term hydrothermal optimal dispatch models are not sufficient to adequately represent this situation, particularly in systems with hydro reservoirs that can store water from one period to another. These models do not use sequential representation of time periods (on the contrary, they work with load blocks) and they do not incorporate most of the non-linear constraints to model specific characteristics such as: minimum power, ramp up/down rates, stabilization times, minimum time in service, minimum down-time, etc. Therefore, more detailed models must be used to comprehensively represent the impact of VRE in the system operation. To assess the true cost of power system operation with high adoption of VRE, this work develops a detailed multi-bus hourly unit commitment model with all non-linear constraints, showing the importance of this type of model for assessing cycling and start-up in the new VRE paradigm.
机译:可变可再生能源(VRE)不断增加的水平,由于其间断性以及随之而来的储备需求,即需要以足够的速度来增加/减少发电量以保持系统平衡,因此在当前电力系统中需要更高的灵活性。在这种情况下,传统的长期热液最优调度模型不足以充分代表这种情况,特别是在具有可以将水从一个时期储存到另一个时期的水库的系统中。这些模型不使用时间段的顺序表示(相反,它们与负载块一起使用),并且它们没有合并大多数非线性约束来对特定特性进行建模,例如:最小功率,上升/下降速率,稳定度因此,必须使用更详细的模型来全面表示VRE对系统运行的影响。为了评估高度采用VRE的电力系统运行的实际成本,这项工作开发了一个具有所有非线性约束的详细的多总线每小时单位承诺模型,表明这种类型的模型对于评估循环和启动的重要性。新的VRE范例。

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