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An inexact cost-risk balanced model for regional energy structure adjustment management and resources environmental effect analysis-a case study of Shandong province, China

机译:区域能源结构调整管理与资源环境效应分析的不精确成本-风险平衡模型-以山东省为例

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摘要

Energy structure adjustment is a significant way to resolve constrained resources and environment, improve the security of energy supply, and achieve sustainable development, which is a complicated itself but further challenged by existence of uncertainties. In this study, an inexact multistage stochastic cost-risk balanced programming model is developed for energy system management under considering the policies of coal-consumption control and pollutants emission reduction. The method is an integration of inexact multistage stochastic programming and a risk management tools from modern financial theory, and could tackle uncertainties described as interval values and probability distributions. The method could reflect energy system dynamic characteristic in a multi-period problem, and provide an effective linkage between conflicting economic cost and the system stability. The proposed method is applied to a real case of planning electric power structure adjustment in Shandong province, China, where the energy system is faced with lots of difficulties complexities in electric power structure adjustment. The impact of coal-consumption control level and pollutants emission reduction scenarios on energy system structure adjustment, and resources and environmental effect were compared and analyzed. The results are valuable for supporting the adjustment or justification of the existing power generation schemes of the complicated regional energy system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:能源结构调整是解决资源和环境受限,提高能源供应安全,实现可持续发展的重要途径,这本身很复杂,但面临不确定性的挑战。在这项研究中,考虑到煤炭消耗控制和污染物排放的政策,开发了一种不精确的多阶段随机成本风险均衡规划模型来进行能源系统管理。该方法是不精确的多阶段随机规划与现代金融理论中的风险管理工具的集成,可以解决不确定性,如区间值和概率分布。该方法可以反映能源系统动态特性的多周期问题,并在矛盾的经济成本与系统稳定性之间建立有效的联系。所提出的方法被应用于中国山东省电力结构规划的实际案例中,该省的能源系统在电力结构调整中面临着许多困难的复杂性。比较分析了煤炭消费控制水平和污染物减排情景对能源系统结构调整的影响,以及资源和环境影响。该结果对于支持复杂区域能源系统的现有发电方案的调整或证明是有价值的。 (C)2017 Elsevier Ltd.保留所有权利。

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