Kajian Literatur Sistematis: Alat Pengukuran Intensitas Getaran Akibat Aktivitas Transportasi
Systematic Literature Review: Measuring Tools for Vibration Intensity Due to Transportation Activities
Keywords:
Infrastructure, Measurement, Train, Traffic, Transportation, Vibration, Vibration Sensor.Abstract
Transport is a tool that plays an important role in society to help move people, goods and services. Improving the economic, tourism and social sectors is one of the positive impacts of transport. Behind the many positive impacts, transport activities have a negative impact in the form of vibrations that affect the surrounding environment. Vibration caused by transport activities can interfere with public comfort and health and cause damage to surrounding infrastructure. This proves that mitigation of vibration impacts is an important thing to do, especially vibration due to transportation activities. Vibration mitigation begins with obtaining measurable and reliable data. The data will be compared with the vibration quality standard regulations that apply in each region. Therefore, it is important to gain an understanding of the use of vibration intensity measuring devices, especially due to transportation activities that have been used by recent researchers. This article is a systematic literature review. The purpose of this article is to find out the application of various vibration measuring devices and analysis methods that can be used. From this goal, it is hoped that it can be a consideration for further research in choosing the vibration measuring device and measurement method to be used.
References
Abas, Z., Yang, D.H., Kim, H.S., Kwak, M.K. and Kim, J., 2015. Characterization of electro-active paper vibration sensor by impact testing and random excitation. International Journal of Applied Mechanics, 7(04), p.1550065.
Adhidhuto, L.S., Muhammad, R., Kurniawan, J., Santosa, P. and Priyanto, A., 2021. Respon Struktur Candi Mendut Terhadap Getaran Lalu Lintas. Jurnal Konservasi Cagar Budaya, 15(1), pp.35-51.
Alfira, F.A., Khambali, K., Suprijandani, S. and Sari, E., 2023. Analysis Of Train Vibration And Noise On Population Subjective Complaints. Jurnal Kesehatan Masyarakat, 11(1), pp.96-101.
Andersen, L.S.R.K. and Nielsen, S.R., 2005. Reduction of ground vibration by means of barriers or soil improvement along a railway track. Soil Dynamics and Earthquake Engineering, 25(7-10), pp.701-716.
Ates, S., Celebi, E., Kirtel, O., Zulfikar, A.C. and Goktepe, F., 2020, March. Measurement of vibrations generated by high speed railway traffic and evaluation according to international norms. In IOP Conference Series: Materials Science and Engineering (Vol. 800, No. 1, p. 012005). IOP Publishing.
Azzara, R.M., De Falco, A., Girardi, M. and Pellegrini, D., 2017. Ambient vibration recording on the Maddalena Bridge in Borgo a Mozzano (Italy): data analysis. Annals of Geophysics, 60(4), pp.1-14.
Azzara, R.M., Girardi, M., Iafolla, V., Lucchesi, D.M., Padovani, C. and Pellegrini, D., 2021. Ambient vibrations of age-old masonry towers: Results of long-term dynamic monitoring in the historic centre of Lucca. International Journal of Architectural Heritage, 15(1), pp.5-21.
Baraccani, S., Azzara, R.M., Palermo, M., Gasparini, G. and Trombetti, T., 2020. Long-term seismometric monitoring of the two towers of Bologna (Italy): modal frequencies identification and effects due to traffic induced vibrations. Frontiers in Built Environment, 6, p.85.
Baraccani, S., Palermo, M., Gasparini, G., Silvestri, S., Trombetti, T. and Azzara, R.M., 2016, July. The static and dynamic monitoring of the asinelli tower in Bologna, Italy. In Proceedings of 8th European Workshop on Structural Health Monitoring (EWSHM).
Barchi, G.L., Berardinelli, A., Guarnieri, A., Ragni, L. and Fila, C.T., 2002. PH—postharvest technology: damage to loquats by vibration-simulating intra-state transport. Biosystems Engineering, 82(3), pp.305-312.
Basekar, P., Vaghela, D. and Katakiya, M., 2015. Impact of traffic vibration on heritage structures. International Journal of Advanced Technology in Engineering and Science, 3(03).
Beben, D., Maleska, T., Bobra, P., Duda, J. and Anigacz, W., 2022. Influence of traffic-induced vibrations on humans and residential building—a case study. International Journal of Environmental Research and Public Health, 19(9), p.5441.
Budi, G.S., 2021. Studi Efektivitas Parit Dalam Mengurangi Getaran. Jurnal Dimensi Pratama Teknik Sipil, 10(2), pp.9-16.
Böröcz, P., 2019. Vibration and acceleration levels of multimodal container shipping physical environment. Packaging Technology and Science, 32(6), pp.269-277.
Bronkhorst, A.J., Moretti, D. and Geurts, C.P.W., 2021. Vibration threshold exceedances in the Groningen building vibration monitoring network. Frontiers in Built Environment, 7, p.703247.
Chaiwong, S., Yoythaisong, P., Arwatchananukul, S., Aunsri, N., Tontiwattanakul, K., Trongsatitkul, T., Kitazawa, H. and Saengrayap, R., 2021. Vibration damage in guava during simulated transportation assessed by digital image analysis using response surface methodology. Postharvest Biology and Technology, 181, p.111641.
Chiang, C.T., Chang, C.I. and Fang, W., 2014. Design of a digitized vibration detector implemented by CMOS digitized capacitive transducer with in-plane SoI accelerometer. IEEE sensors journal, 14(8), pp.2546-2556.
Coelho, B.Z. and Koopman, A., 2012. Scaled test bench for the assessment of wave impeding barriers. In Proceedings of International Conference on Noise and Vibration Engineering (ISMA2012)/International Conference on Uncertainty in Structural Dynamics (USD2012). Leuven, Belgium (pp. 1263-1275).
Connolly, D.P., Kouroussis, G., Woodward, P.K., Costa, P.A., Verlinden, O. and Forde, M.C., 2014. Field testing and analysis of high speed rail vibrations. Soil Dynamics and Earthquake Engineering, 67, pp.102-118.
Connolly, D.P., Marecki, G.P., Kouroussis, G., Thalassinakis, I. and Woodward, P.K., 2016. The growth of railway ground vibration problems—A review. Science of the Total Environment, 568, pp.1276-1282.
Crispino, M. and D'apuzzo, M., 2001. Measurement and prediction of traffic-induced vibrations in a heritage building. Journal of sound and vibration, 246(2), pp.319-335.
Costa, P.A., Calçada, R. and Cardoso, A.S., 2012. Ballast mats for the reduction of railway traffic vibrations. Numerical study. Soil Dynamics and Earthquake Engineering, 42, pp.137-150.
Díaz, J., Ruiz, M., Sánchez-Pastor, P.S. and Romero, P., 2017. Urban seismology: On the origin of earth vibrations within a city. Scientific reports, 7(1), p.15296.
Erkal, A., 2019. Impact of traffic-induced vibrations on residential buildings and their occupants in metropolitan cities. Promet-Traffic&Transportation, 31(3), pp.271-285.
Fernando, I., Fei, J. and Stanley, R., 2019. Measurement and analysis of vibration and mechanical damage to bananas during long-distance interstate transport by multi-trailer road trains. Postharvest Biology and Technology, 158, p.110977.
Gao, G.Y., Li, Z.Y., Qiu, C. and Yue, Z.Q., 2006. Three-dimensional analysis of rows of piles as passive barriers for ground vibration isolation. Soil Dynamics and Earthquake Engineering, 26(11), pp.1015-1027.
Garcia‐Romeu‐Martinez, M.A., Singh, S.P. and Cloquell‐Ballester, V.A., 2008. Measurement and analysis of vibration levels for truck transport in Spain as a function of payload, suspension and speed. Packaging Technology and Science: An International Journal, 21(8), pp.439-451.
Gentile, C., Ruccolo, A. and Canali, F., 2019. Continuous monitoring of the Milan Cathedral: dynamic characteristics and vibration-based SHM. Journal of Civil Structural Health Monitoring, 9, pp.671-688.
Haladin, I., Bogut, M. and Lakušić, S., 2021. Analysis of tram traffic-induced vibration influence on earthquake damaged buildings. Buildings, 11(12), p.590.
Handayani, D., Ubaidillah, U. and Adzim, W.F., Pengaruh Timbunan Jalan Rel Terhadap Tingkat Kebisingan Aktivitas Kereta Api. Matriks Teknik Sipil, 11(4), pp.449-455.
Handayani, D., Ubaidillah, U. and Sabtya, A.M.N., 2024. Karakteristik Tingkat Kebisingan Akibat Aktivitas Kereta Api Di Pemukiman (Studi Kasus: Jl. Cimanuk II-Jebres-Surakarta). Matriks Teknik Sipil, 11(4), pp.442-448.
He, C., Zhou, S., Di, H. and Zhang, X., 2021. An efficient prediction model for vibrations induced by underground railway traffic and experimental validation. Transportation Geotechnics, 31, p.100646.
He, W., Zou, C., Pang, Y. and Wang, X., 2021. Environmental noise and vibration characteristics of rubber-spring floating slab track. Environmental Science and Pollution Research, 28, pp.13671-13689.
Huang, J. and Shi, Z., 2015. Vibration reduction of plane waves using periodic in-filled pile barriers. Journal of Geotechnical and Geoenvironmental Engineering, 141(6), p.04015018.
Ivorra, S. and Pallarés, F.J., 2006. Dynamic investigations on a masonry bell tower. Engineering structures, 28(5), pp.660-667.
Jin, H., Tian, Q., Li, Z. and Wang, Z., 2022. Ability of vibration control using rubberized concrete for tunnel invert-filling. Construction and Building Materials, 317, p.125932.
Kawecki, J. and Stypula, K., 2013. Designing roads near the buildings providing the necessary vibrational comfort for the residents. Procedia Engineering, 57, pp.549-556.
Khoeri, H. and Isvara, W., 2024. Analisis Resiko Getaran Tanah Akibat Pengeboran Rencana Pondasi Jembatan yang Bersimpangan dengan Jalur Pipa Gas. Jurnal Rancang Bangun, Vol. 10 No. 02, pp 095-104. https://ejournal.um-sorong.ac.id/index.php/rancangbangun/article/view/3329
Kouroussis, G., Mouzakis, H.P. and Vogiatzis, K.E., 2017. Structural impact response for assessing railway vibration induced on buildings. Mechanics & Industry, 18(8), p.803.
Lazi, M.K.A.M., Adnan, M.A. and Sulaiman, N., 2022. The impact of train operation time with ground borne vibration induced by railway traffic. In IOP Conference Series: Earth and Environmental Science (Vol. 971, No. 1, p. 012004). IOP Publishing.
Lazi, M.K.A.M., Adnan, M.A., Sulaiman, N., Kamarudin, S.N.N., Hassan, S.A., Warid, M.N.M., Samsudin, M.S., Jasmi, A.R. and Zolkepli, M.F., 2023, September. Allowable Limit of Human Annoyance Towards Ground-Borne Vibration Velocity Induced by Rail Traffic: A Review. In IOP Conference Series: Earth and Environmental Science (Vol. 1238, No. 1, p. 012007). IOP Publishing.
Lee, H.C. and Bae, W.H., 2010. Study on the elimiation of irreversible magnetic components using anhysteretization in a magnetostrictive vibration sensor. Transactions of the Korean Society for Noise and Vibration Engineering, 20(9), pp.841-848.
Margiantono, A. and Setiawati, E., 2009. Prediksi Peningkatan Getaran Di Zona Jalur Kereta Api Sebagai Dampak Adanya Double Track (Yang Akan Dibangun) Untuk Pembangunan Berkelanjutan. Jurnal Pengembangan Rekayasa dan Teknologi, 11(2), pp.67-72.
Ma, M., Markine, V., Liu, W.N., Yuan, Y. and Zhang, F., 2011. Metro train-induced vibrations on historic buildings in Chengdu, China. Journal of Zhejiang University-Science A, 12(10), pp.782-793.
Ma, M., Liu, W., Li, Y. and Liu, W., 2017. An experimental study of vibration reduction of a ballasted ladder track. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 231(9), pp.1035-1047.
Marpaung, B. and Kusumawardani, R., 2020. Vibration Analysis on the Bridge Structures Caused by Train Load. Jurnal Teknik Sipil dan Perencanaan, 22(2), pp.152-157.
Hidup, M.N.L., 1996. Keputusan Menteri Negara Lingkungan Hidup No. 49 Tahun 1996 Tentang: Baku Tingkat Getaran.
Nam, S.B., Yun, G.J. and Lim, S.I., 2011. Development of the inductive proximity sensor module for detection of non-contact vibration. Journal of The Korea Society of Computer and Information, 16(5), pp.61-71.
Ouakka, S., Verlinden, O. and Kouroussis, G., 2022. Railway ground vibration and mitigation measures: benchmarking of best practices. Railway Engineering Science, 30(1), pp.1-22.
Pachla, F., Radecki Pawlik, B., Stypuła, K. and Tatara, T., 2017. Vibration induced by railway traffic-zones of influence on buildings and humans. Vibroengineering Procedia, 13, pp.188-192.
Palermo, M., Azzara, R.M., Baraccani, S., Cavaliere, A., Morelli, A. and Silvestri, S., 2014. Measurements of the free vibration response of the asinelli tower in bologna and its interpretation. In Proceedings of II International Conference on Earthquake Engineering and Seismology (Istanbul) (pp. 1-12).
Paternoster, A., Vanlanduit, S., Springael, J. and Braet, J., 2018. Measurement and analysis of vibration and shock levels for truck transport in Belgium with respect to packaged beer during transit. Food Packaging and Shelf Life, 15, pp.134-143.
Peris, E., Woodcock, J., Sica, G., Sharp, C., Moorhouse, A.T. and Waddington, D.C., 2016. Guidance for new policy developments on railway noise and vibration. Transportation research part A: policy and practice, 85, pp.76-88.
Philips Adewuyi, A., Wu, Z. and Kammrujaman Serker, N.H.M., 2009. Assessment of vibration-based damage identification methods using displacement and distributed strain measurements. Structural Health Monitoring, 8(6), pp.443-461.
Qiu, Y., Zou, C., Wu, J., Shen, Z. and Zhong, Z., 2023. Building vibration measurements induced by train operation on concrete floor. Construction and Building Materials, 394, p.132283.
Qu, X., Ma, M., Li, M., Cao, Y. and Liu, W., 2019. Analysis of the vibration mitigation characteristics of the ballasted ladder track with elastic elements. Sustainability, 11(23), p.6780.
Radiana, S.G., 2008. Discreate fourier transform menjadi fast fourier transform. Jurusan Teknik Elektro, FT Universitas Gajah Mada.
Ramos, L.F., Marques, L., Lourenço, P.B., De Roeck, G., Campos-Costa, A. and Roque, J., 2010. Monitoring historical masonry structures with operational modal analysis: two case studies. Mechanical systems and signal processing, 24(5), pp.1291-1305.
Saisi, A., Gentile, C. and Guidobaldi, M., 2015. Post-earthquake continuous dynamic monitoring of the Gabbia Tower in Mantua, Italy. Construction and Building Materials, 81, pp.101-112.
Shrivastava, R.K. and Rao, N.K., 2002. Response of soil media due to impulse loads and isolation using trenches. Soil Dynamics and Earthquake Engineering, 22(8), pp.695-702.
Singh, J., Saha, K., Leinberger, D. and Antle, J., 2017. Measurement and analysis of transport vibration for ltl freight utilizing stowage optimization equipment. Journal of Packaging Technology and Research, 1, pp.3-11.
Sun, C. and Gao, L., 2017. Medium-to-low-speed freight rail transport induced environmental vibration and analysis of the vibration isolation effect of building slope protection piles. Journal of Vibroengineering, 19(6), pp.4531-4549.
Tadigadapa, S.A.K.M. and Mateti, K., 2009. Piezoelectric MEMS sensors: state-of-the-art and perspectives. Measurement Science and technology, 20(9), p.092001.
Takemiya, H., 2004. Field vibration mitigation by honeycomb WIB for pile foundations of a high-speed train viaduct. Soil Dynamics and Earthquake Engineering, 24(1), pp.69-87.
TATÌ, M.B., CIANETTI, M.M. and DE CANIO, G.E.R.A.R.D.O., 2018. Impact of traffic vibration on the temple of Minerva Medica, Rome: preliminary study within the CO. B. RA. project. Heritage Architecture Studies, p.105.
Tihanyi-Kovács, R., Ásványi, B., Lakatos, E., Bánáti, F., Varga, L. and Böröcz, P., 2023. Effect of simulated transport conditions on microbiological properties of bottled natural mineral water. Water, 15(9), p.1757.
Tobing, I.M., Fikri, F. and Siregar, A.M.R., 2023. Pengaruh Getaran Kereta Api Terhadap Bangunan yang Berdekatan dan Solusi (Studi Kasus: Jalur Kereta Api Natar-Panjang). REKAYASA: Jurnal Ilmiah Fakultas Teknik Universitas Lampung, 27(3), pp.1-5.
Ubertini, F., Comanducci, G., Cavalagli, N., Pisello, A.L., Materazzi, A.L. and Cotana, F., 2017. Environmental effects on natural frequencies of the San Pietro bell tower in Perugia, Italy, and their removal for structural performance assessment. Mechanical Systems and Signal Processing, 82, pp.307-322.
Vasheghani, M., Sadeghi, J. and Khajehdezfuly, A., 2022. Legal consequences of train-induced structure borne noise and vibration in residential buildings. Noise Mapping, 9(1), pp.170-188.
VURSAVUŞ, K.K. and Özgüven, F., 2004. Determining the effects of vibration parameters and packaging method on mechanical damage in golden delicious apples. Turkish Journal of Agriculture and Forestry, 28(5), pp.311-320.
Wati, E.K., Maharani, A. and Anagga, F., 2020. Sistem Pemantauan Getaran Pada Jalur Soft Track Secara Online. STRING (Satuan Tulisan Riset dan Inovasi Teknologi), 5(2), pp.184-190.
Xia, H., Cao, Y., De Guido, R. and Geert, D., 2007. Environmental problems of vibrations induced by railway traffic. Frontiers of Architecture and Civil Engineering in China, 1, pp.142-152.
Zhou, H. and Wang, Z.W., 2018. Measurement and analysis of vibration levels for express logistics transportation in South China. Packaging Technology and Science, 31(10), pp.665-678.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Dewi, Amirotul MH Mahmudah, Pasaribu Satria Pangalapan Tua

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.