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1)  TOPSIS
逼近理想解排序法
1.
Using TOPSIS(Technique for Order Preference by Similarity to Ideal Solution),set the decision-making water bodies measure number as ideal solution,the max-difference number between the evaluation result and the measure result as the negative ideal solution,then Mul.
为了准确地评价水生态系统营养状态和综合决策,通过最大熵原理耦合模糊性与随机性,建立了最大熵模糊评价模型(FAME);利用逼近理想解排序法(TOPSIS),以待决策水体样本的实测值为理想解,以评价结果中与实测值相差最大的为负理想解,建立了多判据决策模型(MCDM)。
2.
By applying AHP in obtaining criteria weight and TOPSIS in ranking, we get satisfactory results.
用层次分析法获得准则的权重和用逼近理想解排序法进行维修服务质量的排序后,得到了满意的结果。
2)  TOPSIS method
逼近理想解的排序法
1.
Analyzing the main factors affecting the importance of the position,get the numerical value of the factors by Delphi method,get the factors weight by AHP method,and gives the sequencing criterions by using TOPSIS method.
分析了影响阵地重要性的主要因素,采取德尔菲法获得指标值,采用层次分析法得到指标权重,利用逼近理想解的排序法对待选阵地的优劣进行了定量分析。
3)  technique for order preference similarity to ideal solution(TOPSIS) method
逼近理想解排序(TOPSIS)法
4)  technique for order preference by grey similarity to ideal solution
灰色逼近理想解排序法
5)  technique for order preference by similarity to ideal solution(TOPSIS)
逼近理想解排序
6)  technique for order preference by similarity to an ideal solution(TOPSIS)
逼近理想解排序法、理想点法
1.
By describing the basic theory of technique for order preference by similarity to an ideal solution(TOPSIS) based on Euclidian distance and applying it to the evaluation of black-start schemes,the black-start problem after a complete or partial blackout of power system is studied to guide the safe and stable operation of power grid.
通过介绍基于欧氏距离的逼近理想解排序法、理想点法(technique for order preference by similarity to anideal solution,TOPSIS)的基本原理,将其应用于黑启动方案评估,研究电力系统完全或部分停电后的黑启动问题,用以指导电网的安全稳定运行。
补充资料:排序法

排序法:指从表现最好的员工开始自上而下按表现水平列出所有的员工。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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