Yovandi, Farrel (2021) Analisis Risiko Dengan Pendekatan Failure Mode And Effect Analysis (Fmea) Sebagai Risk Assesstment Technique Berbasis Iso 31000:2018 Pada Pembangkit Listrik Tenaga Minihidro Pt. X. Undergraduate thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Pengembangan energi terbarukan guna peningkatan kapasitas kelistrikan di Indonesia semakin dipertimbangkan dengan tujuan pencapaian target bauran energi pada 2025. Indonesia yang terkenal akan negara maritim tentu memiliki banyak sumber daya air yang belum dimanfaatkan secara sepenuhnya. Pemanfaatan sumber daya air bisa dilakukan melalui Pembangkit Listrik Tenaga Hidro yang memiliki banyak jenis. PT. X merupakan salah satu perusahaan yang ingin memanfaatkan sumber daya tersebut, namun dalam sebuah pembangkit listrik tenaga hidro tentu banyak risiko yang akan terjadi. Proses identifikasi risiko dilakukan dengan melakukan identifikasi kemungkinan terjadinya kegagalan dari flow process yang ada. Langkah selanjutnya melakukan analisis, penilaianm dan evaluasi risiko dengan basis standar manajemen risiko ISO 310000:2018 2018 dan melakukan asssesstment risiko melalui Failure Mode and Effect Analysis. Risiko-risiko yang telah diolah diberikan penilaian lalu dilakukan pengelompokkan risiko berdasarkan tiga level risiko yaitu high risk, moderate risk, dan low risk. Dari hasil pengelompokkan tersebut dilakukan validasi melalui form yang diisi oleh perusahaan. Berdasarkan hasil identifikasi, diperoleh 35 risiko dari 12 flow process. Dari hasil tersebut kategorisasi level risiko diperoleh 46% tergolong high risk, 48% tergolong moderate risk, dan 6% tergolong low risk. Proporsi untuk empat jenis tipe penanganan risiko yang diusulkan adalah 40% avoid, 51% mitigate, 3% transfer dan 6% accept
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The development of renewable energy to increase electricity capacity in
Indonesia is increasingly being considered with the aim of achieving the energy
mix target by 2025. Indonesia, which is known as a maritime country, certainly has
many water resources that have not been fully utilized. Utilization of water
resources can be done through Hydro Power Plants which have many types. PT. X
is one company that wants to take advantage of these resources, but in a hydro
power plant, of course, there are many risks that will occur.
The risk identification process is carried out by identifying the possibility
of failure of the existing flow process. The next step is to carry out risk analysis,
assessment, and evaluation based on risk management standards ISO 310000:2018
2018 and carry out risk assessments through Failure Mode and Effect Analysis. The
risks that have been processed are given an assessment and then risk grouping is
carried out based on three levels of risk, namely high risk, moderate risk, and low
risk. From the results of the grouping, validation is carried out through a form filled
out by the company.
Based on the identification results, obtained 35 risks from 12 flow
processes. From these results, the categorization of risk levels obtained 46%
classified as high risk, 48% classified as moderate risk, and 6% classified as low
risk. The proportions for the four types of risk management proposed are 40%
avoid, 51% mitigate, 3% transfer and 6% accept
Item Type: | Thesis (Undergraduate) |
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Uncontrolled Keywords: | Manajemen Risiko, Aktivitas Operasional, Flow Process, ISO 31000:2018, Failure Mode and Effect Analysis, assestment risiko, mitigasi risiko |
Subjects: | H Social Sciences > HD Industries. Land use. Labor > HD61 Risk Management T Technology > T Technology (General) > T174.5 Technology--Risk assessment. |
Divisions: | Faculty of Industrial Technology and Systems Engineering (INDSYS) > Industrial Engineering > 26201-(S1) Undergraduate Thesis |
Depositing User: | Farrel Yovandi |
Date Deposited: | 15 Sep 2021 13:37 |
Last Modified: | 15 Sep 2021 13:37 |
URI: | http://repository.its.ac.id/id/eprint/88533 |
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