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Sizing and allocation of frequency restoration reserves for LFC Block cooperation

机译:LFC分组合作的频率恢复储备的大小和分配

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To respond to the ongoing need for efficiency improvement, new balancing arrangements are introduced by the European Network Transmission System Operators of Electricity (ENTSO-E), where transmission system operators (TSOs) cooperate secondary load frequency control (LFC) to reduce both reserve activation and procurement. The latter should, however, not result in inconsistent and disproportional reserve sizing and allocation, which might be the result of the defined cooperation requirements in the Network Code of ENTSO-E. Over-procurement might limit balancing efficiency and under-procurement may jeopardize frequency quality. To investigate such unwanted consequences, two cooperation-concepts are assessed and evaluated in this work for a case study of Central West Continental Europe, namely TSOs sharing its reserves and merging of multiple areas into a common larger LFC Block. Results show that reserve requirements for single areas cannot be directly applied for area cooperation. Especially for the merging of areas into one larger area, current reserve procurement requirements will lead to a relative small amount of procured reserves, which might be risky if no other reserves are available parallel to the merit-order list. For the reserve allocation process, an approach is used to reduce the need of fast-response reserves. Therefore, a signal decomposition technique Hilbert-Huang Transform is used to separate the need for balancing energy into slow and fast-periodic components per area. Results show that the amount of fast-response reserves might be reduced significantly per area. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了满足对效率不断提高的需求,欧洲网络输电系统运营商(ENTSO-E)引入了新的平衡安排,其中输电系统运营商(TSO)与次级负载频率控制(LFC)合作,以减少备用电源激活和采购。但是,后者不应导致储备金的大小和分配不一致和不成比例,这可能是ENTSO-E网络代码中定义的合作要求的结果。采购过多可能会限制平衡效率,采购不足可能会损害频率质量。为了调查这种不良后果,在这项工作中评估和评估了两个合作概念,用于中西欧大陆的案例研究,即TSO分享其储备并将多个区域合并到一个较大的LFC区块中。结果表明,单个区域的储备要求不能直接应用于区域合作。特别是对于将区域合并为一个更大的区域,当前的储备采购要求将导致采购的储备相对较少,如果没有平行于绩效顺序清单的其他储备可用,则这可能是有风险的。对于储备金分配过程,使用一种方法来减少对快速响应储备金的需求。因此,使用信号分解技术希尔伯特-黄变换(Hilbert-Huang Transform)来将对能量的均衡需求划分为每个区域的慢速和快速周期分量。结果表明,每个区域的快速反应储备量可能会大大减少。 (C)2015 Elsevier B.V.保留所有权利。

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