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Nonlinear and randomized pricing for distributed management of flexible loads

机译:非线性和随机定价,用于灵活负载的分布式管理

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Summary form only given. Price-based management of distributed energy resources within microgrids is continuously gaining ground due to scalability and privacy limitations of centralized architectures. However, the concentration of flexible loads' response to the lowest-priced periods yields inefficient solutions. A previously proposed measure imposing a flexibility restriction on flexible loads might raise acceptability and feasibility concerns by the users. This paper develops a novel fully price-based approach where this hard restriction is replaced by a soft nonlinear price signal. This signal is customized to the operating properties of the different flexible load types by penalizing the square of the demand and the duration of cycle delay of loads with continuously adjustable power levels and deferrable cycles, respectively. This approach is shown to produce more efficient solutions than the flexibility restriction measure for both types of loads. For the latter type, randomization of the nonlinear prices brings additional benefits, especially in low operating diversity cases. These contributions are supported by case studies on a microgrid test system with electric vehicles and wet appliances used as representative examples of the above flexible load types.
机译:摘要表格仅给出。由于集中式架构的可扩展性和隐私限制,微电网中的分布能源基于分布式能源的管理不断增加。然而,柔性负载对最低价时期的响应的浓度产生低效的解决方案。先前提出的措施对柔性负载产生灵活限制可能会提高用户的可接受性和可行性问题。本文开发了一种新颖的完全价格的方法,其中这种硬度限制被柔和的非线性价格信号所取代。该信号通过惩罚需求的平方和载荷的循环延迟的持续时间分别具有连续可调节的功率水平和可推迟的循环来定制不同灵活负载类型的操作特性。该方法显示出比两种载荷的灵活限制措施产生更有效的解决方案。对于后一种类型,非线性价格的随机化带来了额外的好处,特别是在低运行分集案件中。这些贡献是通过用于电动车辆和湿家具的微电网测试系统的案例研究支持,所述电动车辆和湿家具用作上述柔性载荷类型的代表性实例。

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