全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
-  2018 

基于熵权的TOPSIS法的港口军事运输能力评估
Military transport capacity evaluation of ports using entropy weight and TOPSIS

DOI: 10.16511/j.cnki.qhdxxb.2018.22.027

Keywords: 军事运输能力,港口,熵权,逼近理想解排序(TOPSIS),
military transport capacity
,port,entropy weight,technique for order preference by similarity to an ideal solution (TOPSIS)

Full-Text   Cite this paper   Add to My Lib

Abstract:

港口具有经济与国防双重属性,可同时为两者服务,但是目前对港口的评估多侧重于经济属性评估,而对港口国防属性的定量评估几乎没有。该文基于熵权的逼近理想解排序(TOPSIS)法评估港口的军事运输能力。指标体系的选取是依据现场调研、文献综述及参考美军的战略港口需求指标,同时综合国内军事运输特点等构建而成。采用基于熵权的TOPSIS法对全国范围内不同区域的27个不同规模的港口进行军事运输能力评估,得出27个港口军事运输能力评估排名,发现现有的港口建设以经济建设为主,较少考虑国防要求,只有少数港口涉及了军民融合式建设内容,如大连港等,相应地,其军事运输能力也领先。
Abstract:There were few quantitative studies of port capacities for military transport with most focusing on the economic efficiency and civilian capacity although the ports often provide military sealift transport services. This study used a quantitative assessment method using entropy weight and the technique for order preference by similarity to an ideal solution (TOPSIS) to assess the military transport capacity. Indicators were defined to evaluate the port capacity from literature data and the Chinese military transport features. The methodology was then used to rank the military transport capacity of 27 coastal ports in China. The findings show that most Chinese ports pay little attention to military transportation. Only a few ports integrate military and civilian transport, such as Dalian which has the greatest military transport capacity.

References

[1]  王春颖, 姜祖祺, 李鹏, 等. 战时港口军事运输保障能力的ANP评价模型[J]. 军事交通学院学报, 2009, 11(1):30-33. WANG C Y, JIANG Z Q, LI P, et al. Analytic-network-process (ANP) evaluation model based on wartime harbor supporting ability of military transportation[J]. Journal of Military Transportation University, 2009, 11(1):30-33. (in Chinese)
[2]  董虎峰, 李聚轩, 孔杰. 海军舰艇编队港口军交运输保障研究[J]. 军事交通学院学报, 2011, 13(5):1-4. DONG H F, LI J X, KONG J. Research on military transportation support of ports for navy armada[J]. Journal of Military Transportation University, 2011, 13(5):1-4. (in Chinese)
[3]  侯远达, 李鹏, 胡建军, 等. 基于港口的部队输送通过能力模型分析[J]. 军事交通学院学报, 2012, 14(8):24-27. HOU Y D, LI P, HU J J, et al. Model for military transportation capabilities based on port[J]. Journal of Military Transportation University, 2012, 14(8):24-27. (in Chinese)
[4]  周济晓, 张祥光, 王亚明. 滚装码头建设贯彻国防要求的内容与指标体系[J]. 军事交通学院学报, 2014, 16(5):31-36. ZHOU J X, ZHANG X G, WANG Y M. On evaluation index system of Ro-Ro terminal construction for national defense demands[J]. Journal of Military Transportation University, 2014, 16(5):31-36. (in Chinese)
[5]  钱润华. 军事力量水路输送转运系统建模优化与仿真研究[D]. 北京:清华大学, 2010. QIAN R H. Modeling, optimization and simulation research on water terminals system in forces transportation[D]. Beijing:Tsinghua University, 2010. (in Chinese)
[6]  SHAO W Q, DU Y C, LU S M. Performance evaluation of port supply chain based on fuzzy-matter-element analysis[J]. Journal of Intelligent & Fuzzy Systems, 2016, 31(4):2159-2165.
[7]  NIAVIS S, VAGGELAS G. An empirical model for assessing the effect of ports' and hinterlands' characteristics on homeports' potential:The case of Mediterranean ports[J]. Maritime Business Review, 2016, 1(3):186-207.
[8]  WANKE P F, BARROS C P. Public-private partnerships and scale efficiency in Brazilian ports:Evidence from two-stage DEA analysis[J]. Socio-Economic Planning Sciences, 2015, 51:13-22.
[9]  FENG M Y, MANGAN J, LALWANI C. Comparing port performance:Western European versus Eastern Asian ports[J]. International Journal of Physical Distribution & Logistics Management, 2012, 42(5):490-512.
[10]  DUTRA A, RIPOLL-FELIU V M, FILLOL A G, et al. The construction of knowledge from the scientific literature about the theme seaport performance evaluation[J]. International Journal of Productivity and Performance Management, 2015, 64(2):243-269.
[11]  KIM A R. A study on competitiveness analysis of ports in Korea and China by entropy weight TOPSIS[J]. The Asian Journal of Shipping and Logistics, 2016, 32(4):187-194.
[12]  张影. 预测与评价[M]. 天津:天津大学出版社, 2015. ZHANG Y. Prediction and evaluation[M]. Tianjin:Tianjin University Press, 2015. (in Chinese)
[13]  张鸿彦, 徐铁军. 港口军事运输装卸能力的分析与计算[J]. 国防交通工程与技术, 2007, 5(2):10-11, 14. ZHANG H Y, XU T J. The analysis and calculation of the military transportation, loading and unloading capabilities of ports[J]. Traffic Engineering and Technology for National Defence, 2007, 5(2):10-11, 14. (in Chinese)
[14]  NǎDǎBAN S, DZITAC S, DZITAC I. Fuzzy TOPSIS:A general view[J]. Procedia Computer Science, 2016, 91:823-831.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133