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Italian protocol for massive solar integration: Imbalance mitigation strategies

机译:大型太阳能集成议定书:不平衡缓解策略

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摘要

This article proposes two strategies for the mitigation of power imbalances and related costs resulting from increasing PV penetration onto the Italian grid. New "state of the art" solar and netload day ahead forecast models were developed and applied to real data.These strategies consist of:(1) Improving the accuracy of PV and net load power forecast and enlarging the footprint of the controlled grid area;(2) Transforming unconstrained PV plants into "flexible PV plants": remotely controlled PV plants that can be proactively curtailed and work with cost-optimized Battery Energy Storage Systems.We demonstrate that the first strategy can effectively limit the imbalance impact when integrating a large share of PV generation, reducing imbalance volumes and costs, both at current and future solar penetration levels.We further demonstrate that the second strategy can entirely eliminate the imbalance impact of PV penetration, hence providing operational certainty to the TSO. Indeed, we show how flexible PV plants can be cost-optimally sized to set the imbalance volume at a desired target value regardless of PV installed capacity, hence allowing massive solar penetration.Finally, we show that the cost of implementing these strategies is less than the current cost of handling such imbalance impacts. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文提出了减轻电力失调和相关成本的两项策略,从而提高PV渗透到意大利网格上。新的“最先进的”太阳能和NetLoad Day预测模型是开发和应用于真实数据的预测模型。这些策略包括:(1)提高光伏和净负荷电力预测的准确性,扩大受控网格区域的占地面积; (2)将无约束的PV工厂转化为“柔性PV工厂”:远程控制的光伏工厂,可以主动减少和使用成本优化的电池储能系统。我们证明了第一策略在整合大型时可以有效地限制不平衡影响在当前和未来的太阳能渗透水平上占用光伏生成,减少不平衡卷和成本。我们进一步证明第二策略可以完全消除PV渗透的不平衡影响,因此为TSO提供操作确定性。实际上,我们展示了灵活的PV工厂如何成本最佳,以在所需的目标值下设置不平衡体积,无论PV安装容量如何,都允许大量的太阳能渗透。最后,我们表明实施这些策略的成本小于处理这种不平衡影响的当前成本。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第6期|725-739|共15页
  • 作者单位

    Univ Roma Tor Vergata Dept Enterprise Engn Via Politecn 1 I-00133 Rome Italy|EURAC Res Viale Druso 1 I-39100 Bolzano Italy;

    SUNY Albany Albany NY 12222 USA;

    Pace Univ Energy & Climate Ctr New York NY 10038 USA;

    EURAC Res Viale Druso 1 I-39100 Bolzano Italy;

    Univ Roma Tor Vergata Dept Enterprise Engn Via Politecn 1 I-00133 Rome Italy|Univ Roma Tor Vergata CHOSE Rome Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photovoltaic penetration; PV power forecast; Netload forecast; Power imbalance;

    机译:光伏渗透;光伏电源预测;NetLoad预测;权力不平衡;

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