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85 DAFTAR PUSTAKA

Alvarez, D.A., Hurtado, J.E. and Bedoya-ruíz, D.A. 2012, Prediction of Modified Mercalli Intensity from PGA , PGV , Moment Magnitude , and Epicentral Distance Using Several Nonlinear Statistical Algorithms , pp. 489–511.

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Brady, T. and. 1975, On The Correlation of Seismic Intensity Scales With The Peak of Recorded Strong Ground Motion, Bulletin of the Seismological Society of America, Vol. 65 No.1, pp. 139–162.

Budiono, B. 2014, Studi Komparasi Sistem Isolasi Dasar High-Damping Rubber Bearing Dan Friction Pendulum System Pada Bangunan Beton Bertulang, Jurnal Teknik Sipil ITB, Vol. 21 No.3, pp. 179–196.

Campbell, K.W. and Bozorgnia, Y. 2011, A Ground Motion Prediction Equation for JMA Instrumental Seismic Intensity for Shallow Crustal Earthquakes in Active Tectonic Regimes, Pacific Conference on Earthquake Engineering, No.September 2010, pp.

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Erdik, M., Ülker, Ö. and Tüzün, C. 2018, Seismic Isolation Code Developments and Signi Fi Cant Applications in Turkey, Soil Dynamics and Earthquake Engineering, Vol. 115 No.September, pp. 413–437.

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Hutapea, B.M., Asrurifak, M., Irsyam, M., Ahli, H., Tanah, T. and Hatti, I. 2015, Generation of a Pair of Surface Time Histories for Jakarta Used for Earthquake Resistance Design of Infrastructures, Jurnal Teknologi, Vol. 11, pp. 17–24.

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86 JMA. 1996, Summary of Tables Explaining the JMA Seismic Intensity Scale Make Residences Earthquake-Resistant and Fix Furniture to Prepare for Earthquakes Japan Meteorological Agency , pp. 8341.

Karim, K.R. and Yamazaki, F. 2002, Correlation of JMA Instrumental Seismic Intensity with Strong Motion Parameters, Eartquake Engineering And Structural Dynamics, Vol. 31, pp. 1191–1212.

Kusuma, D.T. 2021, Fast Fourier Transform ( FFT ) Dalam Transformasi Sinyal Frekuensi Suara Sebagai Upaya Perolehan Average Energy ( AE ) Musik, Petir, Vol. 14 No.1, pp. 28–35.

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Nugroho, W.O., Sagara, A. and Imran, I. 2022, The Evolution of Indonesian Seismic and Concrete Building Codes: From the Past to the Present, Structures, Vol. 41 No.December 2021, pp. 1092–1108.

Sakai, A. 2013, Kōhan’ina Shūki Ryōiki o Taishō to Shita Shindo No Hyōgen-Hō Sakai Vol. 69 No.2, pp. 232–244.

Sakai, A. 2018, Generalization of Calculation Method for Seismic Intensity Using Filtered Acceleration, The Int.J.Eng.Sci, , pp. 34–51.

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Shabestari, K.T. and Yamazaki, F. 2001, A Proposal of Instrumental Seismic Intensity Scale Compatible with MMI Evaluated from Three-Component Acceleration Records, Earthquake Spectra,.

Society, S. 1975, On The Correlation of Seismic Intensity Scales with The Peak of Recorded Strong Ground Motion, Bulletin of the Seismological Society of America, Vol. 65 No.1, pp. 139–162.

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Whittaker, A.S., Atkinson, G.M., Baker, J.W., Bray, J.D., Grant, D.N., Hamburger, R., Haselton, C. and Somerville, P.G. 2011, Selecting and Scaling Earthquake Ground Motions for Performing Analyses, 15 WCEE, , pp. 1–256.

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87 Zhu, C., Huang, H., Liu, H., Song, C., Ma, F. and Liu, Z. 2014, On-Line Vibration Monitoring and Diagnosing of a Multi-Megawatt Wind Turbine Gearbox, International Gear Conference 2014: 26th–28th August 2014, Lyon, , pp. 1089–1098.

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