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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Microgrids: Planning of fuel energy management by strategic deployment of CHP-based DERs - An evolutionary algorithm approach
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Microgrids: Planning of fuel energy management by strategic deployment of CHP-based DERs - An evolutionary algorithm approach

机译:微电网:通过基于CHP的DER的战略部署来计划燃料能源管理-进化算法方法

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摘要

Planning of fuel energy management of a CHP-based microgrid requires strategic deployment of DERs. Strategic deployment of DERs is meant to select their optimal locations, optimal sizes and optimal technologies. Optimal locations and sizes, which are independent of types of CHP-based DERs used, are selected, here, by loss sensitivity index (LSI) and by loss minimization using differential evolution (DE) algorithm respectively. In the context of planning of a 14-bus radial microgrid present paper incorporates originality in ideas in the analysis technique based on differential evolution (DE) algorithm to evaluate how different optimal output sets of a group of four DERs, while operating within their respective capacity limits as well as tracking an electrical demand without grid participation, could satisfy a range of heat demands, each representing a specific solution of optimal fuel consumption. For investment decision in the perspective of the owner of the microgrid the author performs the analysis with two separate groups of 4-DER each of various sizes - one group with all diesel generators (i.e. All-Dg) and other with mix of diesel generators (Dgs) and microturbines (Mts) (i.e. Mix-DER). As the present microgrid is intended to cater both heat and electric demands, as per profiles, to its all-commercial customers, a boiler is considered as need-based back-up source to meet the deficit of daily heat generation, if any, for balancing the daily heat demand. At the best result of optimal fuel cost of each group obtained from above analysis, an economic comparison is done between the two groups with the help of pay back period (PP), internal rate of return (IRR) and net present value (NPV) of the microgrid to decide better investment option of the two. Results of DE are confirmed and compared with particle swarm optimization (PSO) technique.
机译:基于CHP的微电网的燃料能源管理计划要求对DER进行战略部署。 DER的战略部署旨在选择其最佳位置,最佳尺寸和最佳技术。分别通过损耗敏感度指数(LSI)和使用差分演化(DE)算法的损耗最小化来选择与所使用的基于CHP的DER的类型无关的最佳位置和大小。在规划14总线径向微电网的背景下,本论文在基于差分进化(DE)算法的分析技术中结合了创意,以评估一组四个DER的不同最佳输出集如何在各自能力范围内运行限制以及在没有电网参与的情况下跟踪电力需求,都可以满足一定范围的热量需求,每一个都代表了最佳燃料消耗的特定解决方案。为了从微电网所有者的角度进行投资决策,作者使用两组不同大小的4-DER进行了分析-一组使用所有柴油发电机(即All-Dg),另一组使用混合柴油发电机( Dgs)和微型涡轮机(Mts)(即Mix-DER)。由于目前的微电网旨在满足其所有商业客户的热量和电力需求,因此,锅炉被认为是基于需求的备用电源,可以满足每日热量产生的不足(如果有的话)。平衡每日热量需求。根据以上分析得出的各组最佳燃料成本的最佳结果,借助于投资回收期(PP),内部收益率(IRR)和净现值(NPV)在两组之间进行了经济比较。微电网,以决定两者的更好的投资选择。 DE的结果得到确认,并与粒子群优化(PSO)技术进行比较。

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