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首页> 外文期刊>Journal of Energy Engineering >Inexact Credibility-Constrained Programming Approach for Electricity Planning in Ontario, Canada
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Inexact Credibility-Constrained Programming Approach for Electricity Planning in Ontario, Canada

机译:加拿大安大略省的电力规划不精确受限规划方法

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摘要

Under current changing climatic conditions, there has been a growing interest in green energy to mitigate carbon emissions. As such, proper management and planning of electricity are essential to mitigating climate change. This paper presents a hybrid inexact credibility constraint programming (ICCP) model for planning and optimization in the electricity sector for Ontario, Canada. The model considers the costs and emissions of electricity generated from six sources over a planning horizon of 30 years, minimizing system cost while meeting provincial emission goals. The ICCP method addresses uncertainties by transforming fuzzy variables into crisp equivalents with credibility levels, allowing decision-makers to address uncertainties in planning by tackling uncertainties as intervals through an interactive two-step algorithm. This model was applied to electricity planning in Ontario to address uncertainties due to demand predictions, technological advancements, and shifting energy consumption. The cap-and-trade program was compared to the federal carbon pricing backstop program, and the results over the planning horizon were similar. Through this model, expansion options to address future demands were also compared to minimize emissions while meeting electricity demand. (C) 2021 American Society of Civil Engineers.
机译:根据当前变化的气候条件,对绿色能源产生了日益增长的兴趣,以减轻碳排放。因此,适当的管理和规划的电力对于减轻气候变化至关重要。本文介绍了加拿大安大略省电力部门规划和优化的混合不精确的信誉约束规划(ICCP)模型。该模型考虑了从六个来源产生的电力的成本和排放量为30年的规划地平线,最大限度地降低了省级排放目标的制度成本。 ICCP方法通过将模糊变量转换为具有可信度水平的脆性等价物来解决不确定性,允许决策者通过通过交互式的两步算法将不确定性作为间隔解决不确定性来解决规划中的不确定性。该模型应用于安大略省的电力规划,以解决由于需求预测,技术进步和转移能耗而导致的不确定性。将CAP和贸易计划与联邦碳定价进行比较,并对规划地平线的结果相似。通过此模型,相比,应对未来需求的扩展选项,以最大限度地减少电力需求的同时减少排放量。 (c)2021年美国土木工程师协会。

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