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Reliable Renewable Generation and Transmission Expansion Planning: Co-Optimizing System's Resources for Meeting Renewable Targets

机译:可靠的可再生生成和传输扩展规划:共同优化系统资源,以满足可再生目标

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摘要

Summary form only given. The current renewable-driven generation expansion wave, pushed by high renewable targets, is not accompanied by the same movement in the transmission expansion planning (TEP) side. In this context, new techniques are needed to balance the cost of relying in expensive reserve resources and the cost of building new lines to ensure least-cost reserve deliverability and foster new renewable projects. The situation is worsened in the presence of contingencies, where the interaction between the optimal reserve siting and deployment, the amount of renewable curtailment, the construction of new lines, and the selection of candidate renewable sites to be developed became even more complex. This paper presents a two-stage min-max-min model for co-optimizing the expansion of the transmission system and renewable generation capacity to meet renewable targets under high security standards and renewable uncertainty. In order to account for realistic reserve needs and its interaction with the expansion plan, correlations between renewables injection as well as generation and transmission (GT) outages are accounted for in a worst-case fashion. In order to ensure security within a flexible framework, the concept of compound GT n-K security criteria is presented. Three case studies are proposed to illustrate the applicability of the proposed model. A case study with realistic data from the Chilean system is presented and solutions obtained with different level of security are tested against a set of 10,000 simulated scenarios of renewable injections and system component outages.
机译:摘要表格仅给出。由高可再生目标推动的当前可再生驱动的产生膨胀波,不伴随着传输扩展规划(Tep)侧的相同运动。在这种情况下,需要新的技术来平衡依赖昂贵的储备资源和建设新线路的成本,以确保最低成本储备可交付能力和促进新的可再生项目的成本。在存在的情况下,这种情况恶化,其中最优储备选址和部署之间的互动,可再生缩减量,新线的建设以及候选人可再生地点的选择变得更加复杂。本文提出了一种两阶段最小 - 最大 - 最小型号为共同优化传输系统和可再生能源发电能力,以满足在高安全标准和可再生能源的不确定性可再生能源目标的扩张。为了考虑现实储备需求及其与扩展计划的互动,以最坏的方式为可再生能源注入和生成和传输(GT)中断之间的相关性。为了确保在灵活框架内的安全性,提出了复合GT N-K安全标准的概念。提出了三种案例研究来说明所提出的模型的适用性。提出了具有来自智利系统的现实数据的案例研究,并通过不同安全水平获得的解决方案对抗一组10,000个可再生注射和系统组件中断的模拟场景。

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