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A taxonomy of systems that combine utility-scale renewable energy and energy storage technologies

机译:合并公用事业可再生能源和能量存储技术的系统分类

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Interest in renewable energy-based hybrid systems-which combine multiple renewable energy and/or energy storage technologies-is apparent and growing. Such systems could play an important role in the grid of the future, but our ability to quantify their potential impacts is hindered by (a) the inconsistent treatment of hybrid systems and (b) an incomplete understanding of which aspects of hybridization will have the greatest influence. In this article, we review the literature and propose an organization scheme for utility-scale hybrid systems in which electricity is generated from commercially available, renewable energy technologies, and electricity is the only output. Based on this literature review, we propose three categories for delineating systems that link multiple renewable energy and/or energy storage technologies: co-located resources (locational linkage only), virtual power plants (operational linkage only), and full hybrids (location and operational linkages). Proposing a categorization based on whether the systems involve locational and/or operational linkages reflects the fact that technology combinations do not represent a meaningful delineation. In addition, the categories are ideal for informing model development efforts, by identifying the unique characteristics that must be captured in adequate representations of systems that fall under each category. Our categories can also help inform policy considerations, as they delineate system characteristics that would introduce distinct permitting, siting, interconnection, and policy challenges. Therefore, we believe that our proposed taxonomy will help organize thinking and research efforts in a way that will enable consistent evaluation of the costs, values, and potential of renewable energy-based hybrids.
机译:对可再生能源的混合系统的兴趣 - 组合多种可再生能源和/或能量存储技术 - 显而易见的和生长。这些系统可以在未来的网格中发挥重要作用,但我们量化其潜在影响的能力受到(a)混合系统的不一致治疗和(b)对杂交的哪个方面的不完全理解将具有最大的影响。在本文中,我们审查了文献,并提出了一个用于公用规模混合系统的组织方案,其中来自商业上可用的,可再生能源技术,电力是唯一的输出。根据该文献综述,我们提出了三类划分系统,用于将多种可再生能源和/或能量存储技术联系起来:共同定位资源(仅限地点),虚拟发电厂(仅限运营链接)和完整的混合动力车(位置和运营联系)。提出基于系统是否涉及位置和/或运营联系的分类反映了技术组合不代表有意义的描绘的事实。此外,这些类别是可以通过识别必须在每个类别下降的系统的适当表示中捕获的独特特征来了解模型开发工作的理想选择。我们的类别还可以帮助通知政策考虑因素,因为它们描绘了系统特征,这些特征将引入独特的允许,选址,互连和政策挑战。因此,我们认为,我们所提出的分类系统将有助于组织思维和研究努力,以便能够一致地评估可再生能源的混合动力车的成本,价值观和潜力。

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