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Optimal grid design and logistic planning for wind and biomass based renewable electricity supply chains under uncertainties

机译:不确定性下基于风能和生物质能的可再生电力供应链的最佳网格设计和物流规划

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摘要

In this work, the grid design and optimal allocation of wind and biomass resources for renewable electricity supply chains under uncertainties is studied. Due to wind intermittency, generation of wind electricity is not uniform and cannot be counted on to be readily available to meet the demand. Biomass represents a type of stored energy and is the only renewable resource that can be used for producing biofuels and generating electricity whenever required. However, amount of biomass resources are finite and might not be sufficient to meet the demand for electricity and biofuels. Potential of wind and biomass resources is therefore jointly analyzed for electricity generation. Policies are proposed and evaluated for optimal allocation of finite biomass resources for electricity generation. A stochastic programming model is proposed that optimally balances the electricity demand across the available supply from wind and biomass resources under uncertainties in wind speed and electricity sale price. A case study set in the American Midwest is presented to demonstrate the effectiveness of the proposed model by determining the optimal decisions for generation and transmission of renewable electricity. Sensitivity analysis shows that level of subsidy for renewable electricity production has a major impact on the decisions.
机译:在这项工作中,研究了不确定性条件下可再生电力供应链的网格设计以及风能和生物质资源的优化分配。由于风的间歇性,风电的产生是不均匀的,因此不能指望可以随时满足需求。生物质代表一种存储的能量,并且是唯一可在需要时用于生产生物燃料和发电的可再生资源。但是,生物量资源的数量是有限的,可能不足以满足电力和生物燃料的需求。因此,对风力和生物质资源的潜力进行了联合分析以进行发电。提出并评估了用于发电的有限生物量资源的最优分配的政策。提出了一种随机规划模型,该模型在风速和售电价格存在不确定性的情况下,在风能和生物质资源的可用供应量之间最优地平衡电力需求。提出了一个在美国中西部地区进行的案例研究,通过确定可再生电力的产生和传输的最佳决策来证明该模型的有效性。敏感性分析表明,可再生电力生产的补贴水平对决策有重大影响。

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