Details

Title

Fuzzy TOPSIS Approach in Selection of Optimal Noise Barrier for Traffic Noise Abatement

Journal title

Archives of Acoustics

Yearbook

2015

Volume

vol. 40

Issue

No 4

Authors

Keywords

fuzzy TOPSIS ; MADM ; road traffic noise ; fuzzy positive ideal solution (FPIS) ; fuzzy negative ideal solution (FNIS) ; SWOT analysis

Divisions of PAS

Nauki Techniczne

Coverage

453-467

Publisher

Polish Academy of Sciences, Institute of Fundamental Technological Research, Committee on Acoustics

Date

2015[2015.01.01 AD - 2015.12.31 AD]

Type

Artykuły / Articles

Identifier

DOI: 10.1515/aoa-2015-0045

Source

Archives of Acoustics; 2015; vol. 40; No 4; 453-467

References

Ishizuka (2004), Performance of noise barriers with various edge shapes and acoustic conditions, Applied Acoustics, 65, 125, doi.org/10.1016/j.apacoust.2003.08.006 ; Egan (2006), An investigation of the use of the top edge treatments to enhance the performance of a noise barrier using boundary element method th International Congress on Sound and Vibration Vienna th, Austria, 1. ; Mahdavi (2008), Designing a model of fuzzy TOPSIS in multiple criteria decision making and Computation, Applied Mathematics, 206. ; Baulac (2008), Optimization with genetic algorithm of acoustical performance of T - shaped noise barriers with a reactive top surface, Applied Acoustics, 69. ; Garg (2013), Significance and implications of airborne sound insulation criteria in building elements for traffic noise abatement, Applied Acoustics, 74. ; Velasquez (2013), An Analysis of Multi - Criteria Decision Making Methods of, International Journal Operations Research, 10, 56. ; Fujiwara (1998), Chulhwan Noise barriers with reactive surfaces, Applied Acoustics, 53, 255, doi.org/10.1016/S0003-682X(97)00064-9 ; Watts (1996), Acoustic performance of parallel traffic noise barriers, Applied Acoustics, 47, 95, doi.org/10.1016/0003-682X(95)00031-4 ; Cianfrini (2007), Experimental verification of the acoustic performance of diffuse roadside noise barriers, Applied Acoustics, 68. ; Garg (2015), A retrospective view of ambient noise standards in India : Status and proposed revision Noise Control Engg, Journal, 20, 63. ; Monazzam (2011), Performance of passive and reactive profiled median barriers in traffic noise reduction of Applied Physics and Engineering, Journal, 12, 78. ; Ding (2011), An integrated Fuzzy TOPSIS method for ranking alternatives and its application of Marine Science and Technology, Journal, 19, 341. ; Hothersall (1991), The performance of T - profile and associated noise barriers, Applied Acoustics, 32, 269, doi.org/10.1016/0003-682X(91)90075-P ; Shao (2001), Performance of noise barriers with random edge profiles, Applied Acoustics, 62, 10, doi.org/10.1016/S0003-682X(00)00099-2 ; Hung (2009), A Fuzzy TOPSIS Decision Making Model with Entropy Weight under Intuitionistic Fuzzy Environment Proceedings of the In - ternational Multi Conference of Engineers and Computer Scientists, Kong, 18. ; Fahy (1995), Development of a novel modular form of sound absorbent facing for traffic noise barrier, Applied Acoustics, 44, 1, doi.org/10.1016/0003-682X(94)P4418-6
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