Pembuatan sistem monitoring getaran dan running hour pada mesin kompresor berbasis internet of things = Design of vibration monitoring system and running hour of compressor engine based on internet of things

Paulus, Laurentius Geraldi (2021) Pembuatan sistem monitoring getaran dan running hour pada mesin kompresor berbasis internet of things = Design of vibration monitoring system and running hour of compressor engine based on internet of things. Bachelor thesis, Universitas Pelita Harapan.

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Abstract

Kompresor merupakan suatu alat yang berfungsi untuk menghasilkan udara yang bertekanan dengan cara memampatkan udara yang ada. Program Studi Teknik Industri Universitas Pelita Harapan menggunakan kompresor untuk menunjang mesin-mesin dan alat pada lab yang menggunakan sistem pneumatik. Pada penelitian ini dilakukan perancangan sistem monitoring yang dapat memantau dan mendokumentasikan terkait penggunaan mesin dan proses drainase pada tangki kompresor serta menganalisa getaran yang dihasilkan pada mesin kompresor. Metode yang digunakan dalam penelitian ini adalah metode system engineering process. Metode ini dipilih karena memiliki struktur yang jelas, dan memberikan pemahaman kepada customer dalam menentukan sistem secara keseluruhan, sehingga kebutuhan dan persyaratan customer dapat terpenuhi dalam perancangan sistem. Berdasarkan hasil dari penelitian, didapatkan bahwa perancangan sistem monitoring mesin kompresor dapat berhasil dibangun dengan menggunakan NodeMCU sebagai mikrokontroler, sensor ADXL345 sebagai pembaca nilai getaran yang digunakan untuk menganalisis nilai RMS, sensor MPU6050 sebagai pembaca nilai level tegangan untuk mendeteksi running hour, dan limit switch sebagai pendeteksi keran drainase. Sistem ini dapat berjalan secara realtime karena terkoneksi dengan jaringan internet dan aplikasi blynk. Hasil pengukuran saat rangkaian dipasangkan pada sistem kompresor, menunjukkan bahwa nilai RMS yang dihasilkan adalah sebesar 5,09 dan dari perhitungan regresi linear adalah sebesar 4.14 mm/s. Kedua nilai ini menunjukkan bahwa mesin kompresor berada dalam kondisi unsatisfactory. Dari hasil penelitian ini diberikan saran bagi peneliti selanjutnya untuk mengembangkan sistem berbasis internet of things dengan menggunakan webserver, dan melakukan pengembangan pada desain, agar hasil perancangan dapat terpasang lebih aman dan nyaman untuk digunakan / Compressor is a device to produce pressurized air by compressing the existing air. Department of Industrial Engineering at Pelita Harapan University uses compressor to support machines and tools in the lab which use pneumatic systems. In this research, a monitoring system is designed that can monitor and document the use of machines and drainage process in the compressor tank and also analyze the vibrations generated in the compressor engine. The method used in this research is the system engineering process method. This method was chosen because it has a clear structure, and provides understanding to the customer in determining the overall system, so that customer needs and requirements can be met in system design. Based on the results of the study, the compressor engine monitoring system design can be successfully built using NodeMCU as a microcontroller, ADXL345 sensor as a vibration value reader used to analyze RMS values, MPU6050 sensor as a voltage level value reader to detect running hours, and limit switches as drainage faucet detector. This system can run in real time because it is connected to the internet network and the blynk application. The measurement results when the circuit is attached to the compressor system, show that the resulting RMS value is 5.09 and from the linear regression calculation is 4.14 mm/s. These two values indicate that the compressor engine is in an unsatisfactory condition. From the results of this study, suggestions are given for further researchers to develop an internet of things-based system using a webserver, and carry out developments on the design, so that the design results can be installed more safely and comfortably to use.

Item Type: Thesis (Bachelor)
Creators:
CreatorsNIMEmail
Paulus, Laurentius GeraldiNIM00000024831garypaulus@gmail.com
Contributors:
ContributionContributorsNIDN/NIDKEmail
Thesis advisorRahayu, Priskila ChristineNIDN0317097404UNSPECIFIED
Thesis advisorSoewono, EffendiUNSPECIFIEDUNSPECIFIED
Uncontrolled Keywords: system design; system engineering process; nodemcu; adxl345 sensor; mpu6050 sensor; blynk
Subjects: T Technology > T Technology (General) > T55.4-60.8 Industrial engineering. Management engineering
Divisions: University Subject > Current > Faculty/School - UPH Karawaci > Faculty of Science and Technology > Industrial Engineering
Current > Faculty/School - UPH Karawaci > Faculty of Science and Technology > Industrial Engineering
Depositing User: Users 7797 not found.
Date Deposited: 06 Aug 2021 08:51
Last Modified: 06 Aug 2021 08:51
URI: http://repository.uph.edu/id/eprint/41292

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