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Hazard Risk Management Analysis PO PT Gunung Harta Transport Solutions Uses FMEA And RCA Methods Kadek Bintang Wigayana; Rifano
JOURNAL OF CIVIL ENGINEERING BUILDING AND TRANSPORTATION Vol. 9 No. 1 (2025): JCEBT MARET
Publisher : Universitas Medan Area

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31289/jcebt.v9i1.12203

Abstract

This study aims to determine the potential hazards and risks and to find the root causes of potential hazards and risks in the public transportastion company PT. Gunung Harta Transport Solutions. The methods used are FMEA and RCA with an observation, interview, questionnaire, and documentation approach. The research sample is the Head of Office Administration, Head of Workshop, and Head of Operational Staff. The results of the assessment of 32 indicators using the FMEA method, obtained RPN values with codes X1 to X32. Of the 32 indicators included in the ranking category, 2 are Critical, 3 are High, 7 are Medium, and 20 are Low. To find potential causes of danger, using the RCA method from the RPN results. The office section is the use of computers/laptops, office staff work beyond office operating hours and lack of rest breaks for office staff. The workshop section is the repair of the AC system, lack of awareness of the importance of implementing K3 in the workshop. The operational section is reckless drivers, lack of driver understanding regarding driving safety. This study concludes that companies must always pay attention to K3 aspects in every office, workshop, and vehicle operation activity.
IoT-Based Motorcycle Hydraulic Brake Condition Monitoring System with Real-Time Website Integration Ahda Elok Hijriyani, Aufil; Pratindy, Raka; Humami, Faris; Rifano
Journal of Vocational, Informatics and Computer Education Vol 4, No 1 (2026): March 2026
Publisher : Academic Bright Collaboration

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.66053/voice.v4i1.587

Abstract

Purpose - Brake failure on motorcycles, particularly on downhill roads, remains a critical safety hazard driven by thermal overheating, fluid degradation, and fluid-loss conditions that conventional single-parameter monitoring systems fail to detect comprehensively. This study successfully developed and preliminarily evaluated an IoT-based multi-sensor monitoring system for real-time detection of hydraulic disc brake conditions on motorcycles using a Research and Development approach. Method - The prototype integrates a Thermocouple Type K, a capacitive moisture sensor, a Level Sensor K-0135, and a GPS BN-220 connected to an ESP32 DevKit V1 microcontroller with MySQL database and Laravel 12 web dashboard integration. Validation encompassed laboratory calibration, 40 scenario classification tests, 50 trial response time measurements, and field testing on flat and downhill roads. Findings -All sensors achieved high accuracy, with thermocouple accuracy of 98.9%, moisture sensor 97.4%, level sensor 98.82%, and GPS speed 97.3% with 100% rule-based output conformity across all 40 predefined scenarios and a mean response time of 0.9314 seconds. Field classification across 3,201 time-series readings yielded an overall classification consistency of 93.22%, with perfect recall for CRITICAL and WARNING states based on predefined threshold rules. Brake pad temperature escalated from 35°C to 134°C on downhill roads, preliminarily supporting the 120°C threshold as an early warning boundary, consistent with documented brake fluid thermal degradation characteristics. Thermocouple reliability decreased to 67.7% under worst-case vibration due to short-circuit interference, representing a critical limitation affecting system reliability under real-world conditions, while dashboard operation remains dependent on stable internet connectivity. Research Implications - This study extends prior single-parameter approaches through a three-tier classification framework (NORMAL–WARNING–CRITICAL). Originality - with the primary contribution lying in the repositioning of the thermocouple from the reservoir to the brake pad surface, enabling more proximal thermal monitoring at the friction interface under the tested conditions.
Analisis dan Redesain Kursi Pengemudi Truk Pertamina Ditinjau dari Aspek Ergonomi Agung Tri Febrianto; Rifano; Helmi Wibowo; Sugiyarto
Jurnal Teknologi dan Manajemen Industri Terapan Vol. 5 No. 2 (2026): Jurnal Teknologi dan Manajemen Industri Terapan
Publisher : Yayasan Inovasi Kemajuan Intelektual

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55826/jtmit.v5i2.1748

Abstract

Pengemudi truk tangki PT Pertamina (Persero) menghadapi risiko gangguan muskuloskeletal akibat penggunaan kursi pengemudi yang belum sepenuhnya memenuhi prinsip ergonomi. Penelitian ini bertujuan menganalisis tingkat ergonomis kursi pengemudi truk Pertamina berbasis sasis Hino di Fuel Terminal Rewulu serta merumuskan rekomendasi redesain berbasis antropometri. Metode yang digunakan meliputi pengukuran sudut postur dengan goniometer pada 58 responden, kuesioner Nordic Body Map (NBM) dengan skala Likert, serta simulasi software Jack versi 8.4 menggunakan metode Posture Evaluation Index (PEI) yang mengintegrasikan Low Back Analysis (LBA), Ovako Working Posture Analysis System (OWAS), dan Rapid Upper Limb Assessment (RULA). Hasil menunjukkan bahwa sudut torso tidak memenuhi standar rekomendasi, nilai PEI tertinggi sebesar 2,100 dan terendah 1,408, serta keluhan muskuloskeletal terbesar terdapat pada batang tubuh dan leher. Rekomendasi redesain kursi berbasis data antropometri Perhimpunan Ergonomi Indonesia berhasil menurunkan nilai PEI hingga 1,835 pada responden dengan risiko tertinggi, membuktikan bahwa penyesuaian dimensi kursi secara ergonomis efektif meningkatkan kenyamanan dan keselamatan pengemudi.