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Explicit cost-risk tradeoff for renewable portfolio standard constrained regional power system expansion: A case study of Guangdong Province, China

机译:可再生能源组合标准的显式成本-风险权衡限制了区域电力系统的扩展:以中国广东省为例

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In this paper, a risk explicit interval two-stage programming (REITSP) model was proposed for supporting the regional electricity generation expansion with renewable portfolio standard (RPS) constraint. It could effectively tackle multiple uncertainties expressed as interval numbers. But unlike the traditional interval two-stage programming model, the proposed REITSP model could provide an explicit trade-off information between system cost and risk for decision makers with different risk preferences. It could minimize the total system cost, as well as the decision risk according to the aspiration risk level of decision maker. The developed REITSP model was applied to the case study in Guangdong Province, China for its long-term electricity system planning. Crisp solutions under different aspiration risk levels for varying RPS targets were obtained and analyzed. The results showed that according to the current available renewable energy and affordable construction speed, the maximum RPS target for Guangzhou Province during 2016-2025 should be 17%. Higher RPS level would promote the renewable energy generation, especially solar power; meanwhile, it would reduce the CO2 emission and the imported electricity, but with greater investment cost. The obtained results and trade-off information would be valuable for the optimal long-term electricity system expansion planning when facing future uncertain situation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种风险显式区间两阶段规划(REITSP)模型,以可再生能源投资组合标准(RPS)约束来支持区域发电扩张。它可以有效地解决表示为区间数的多个不确定性。但是与传统的间隔两阶段编程模型不同,所提出的REITSP模型可以为具有不同风险偏好的决策者提供系统成本与风险之间的明确权衡信息。根据决策者的期望风险水平,它可以最大程度地降低系统总成本以及决策风险。将开发的REITSP模型应用于中国广东省的长期电力系统规划案例研究。获得并分析了针对不同RPS目标在不同吸入风险水平下的脆溶液。结果表明,根据当前可用的可再生能源和可负担的建设速度,2016-2025年广州省的最大RPS目标应为17%。较高的RPS水平将促进可再生能源发电,特别是太阳能发电;同时,将减少二氧化碳排放量和进口电力,但投资成本较高。当面对未来的不确定情况时,获得的结果和权衡信息对于最优的长期电力系统扩展计划将是有价值的。 (C)2017 Elsevier Ltd.保留所有权利。

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