SISTEM MONITORING GETARAN BANGUNAN MENGGUNAKAN SENSOR ACCELEROMETER ADXL345

SUPRIATNA, ASEP (2020) SISTEM MONITORING GETARAN BANGUNAN MENGGUNAKAN SENSOR ACCELEROMETER ADXL345. S1 thesis, Universitas Mercu Buana Bekasi.

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Abstract

ABSTRAK Getaran pada bangunan merupakan sebuah energi yang dihasilkan dari berbagai aktifitas pergerakan yang berdampak pada bangunan, seperti aktifitas mesin dengan prinsip putar maka akan menghasilkan getaran yang merambat kepada bangunan dimana mesin tersebut berada, aktifitas manusia yang ada digedung tersebut akan menghasilkan getaran terhadapa bangunan, hingga aktifitas dari pergerakan seimik bumi yang menyebabkan gempa yang berdampak memberikan getaran kepada bangunan. Prototype alat ukur getaran menggunakan sensor accelerometer ADXL345 dirancang untuk mendapatkan nilai getaran yang terjadi pada bangunan secara real time sehingga dapat digunakan sebagai data untuk pertimbangan keamanan sebuah bangunan, Hasil dari pengujian ini adalah diketahui jeda pengukuran rata-rata dari sistem ini adalah 2.64 detik, dengan menggunakan Alat Goncang Gempa Simutaga, didapatkan data rentang kemampuan pengkuran frekuensi sistem ini adalah 2.1 Hz hingga 7.1 Hz, rentang amplitudo yang dapat diukur adalah 6.39 m/s² hingga 11.41 m/s², dan besar data tersimpan dari hasil pengukuran adalah rata-rata 9.67 Mega Byte untuk 10 menit pengukuran. Kata Kunci : Sensor Accelerometer, ADXL345, Real Time, Delay, Frekensi, Amplitudo ABSTRACT Vibration in buildings consists of energy generated from various activities that have an impact on buildings, such as the activity of machines with a turning platform it will produce vibrations that propagate to the building where the machine is located, human activities being excavated will result in an increase in building, according to the activities of the movement seimik earth that causes earthquakes that give vibrations to buildings. The prototype of the vibration measuring device using the ADXL345 accelerometer sensor is designed to get the value of vibrations carried out on the building in real time so that it can be used as data for safety considerations of a building, The result of this test is known that the average measurement interval of this system is 2.64 seconds, using the Simutaga Earthquake Shaking Tool, the data obtained about the measurement ability of this system is 2.1 Hz to 7.1 Hz, the amplitude range that can be used is 6.39 m / s² to 11.41 m / s², and large data is stored from measurements of an average of 9.67 Mega Bytes for 10 minutes of measurement. Keywords: Sensor Accelerometer, ADXL345, Real Time, Delay, Frequency, Amplitude

Item Type: Thesis (S1)
Call Number CD: FE/ELK 20 010
NIM/NIDN Creators: 41117120024
Uncontrolled Keywords: Kata Kunci : Sensor Accelerometer, ADXL345, Real Time, Delay, Frekensi, Amplitudo
Subjects: 600 Technology/Teknologi > 620 Engineering and Applied Operations/Ilmu Teknik dan operasi Terapan > 621 Applied Physics/Fisika terapan > 621.3 Electrical Engineering, Lighting, Superconductivity, Magnetic Engineering, Applied Optics, Paraphotic Technology, Electronics Communications Engineering, Computers/Teknik Elektro, Pencahayaan, Superkonduktivitas, Teknik Magnetik, Optik Terapan, Tekn
Divisions: Fakultas Teknik > Teknik Elektro
Depositing User: siti maisyaroh
Date Deposited: 06 Jun 2022 08:03
Last Modified: 06 Jun 2022 08:03
URI: http://repository.mercubuana.ac.id/id/eprint/62727

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