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Estimating ramping requirements with solar-friendly flexible ramping product in multi-timescale power system operations

机译:利用太阳能友好型柔性坡道产品在多时标电力系统运行中估算坡道需求

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The increasing solar power penetration causes the need of additional flexibility for power system operations. Market-based flexible ramping services have been proposed in several balance authorities to address this issue. However, the ramping requirements in multi-timescale power system operations are not well defined and still challenging to be accurately estimated. To this end, this paper develops a multi-timescale unit commitment and economic dispatch model to estimate the ramping requirements. Furthermore, a solar power ramping product (SPRP) is developed and integrated into the multi-timescale dispatch model that considers new objective functions, ramping capacity limits, active power limits, and flexible ramping requirements. To find the optimal ramping requirement based on the level of uncertainty in netload, a surrogate-based optimization model is developed to approximate the objective function of the multi-timescale dispatch model that considers both economic and reliability benefits of the balancing authorities. Numerical simulations on a modified IEEE 118-bus system show that a better estimation of ramping requirements could enhance both the reliability and economic benefits of the system. The use of SPRP can reduce the flexible ramping reserves provided by conventional generators.
机译:不断增加的太阳能普及率导致对电力系统操作需要更多的灵活性。已经在一些平衡管理机构中提出了基于市场的灵活坡道服务,以解决此问题。但是,多时标电力系统运行中的斜坡要求尚未很好地定义,并且仍然难以准确估计。为此,本文建立了一个多时标单位承诺和经济调度模型来估算加坡需求。此外,开发了太阳能斜坡产品(SPRP)并将其集成到多时标调度模型中,该模型考虑了新的目标功能,斜坡容量限制,有功功率限制和灵活的斜坡需求。为了基于净负载中的不确定性水平找到最佳的斜坡需求,开发了一种基于代理的优化模型,以近似考虑平衡机构的经济和可靠性优势的多时标调度模型的目标函数。在改进的IEEE 118总线系统上进行的数值模拟表明,更好地估计坡道需求可以提高系统的可靠性和经济效益。 SPRP的使用可以减少常规发电机提供的灵活的斜坡储备。

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