Paulus Wisnu Anggoro
Universitas Atma Jaya Yogyakarta

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Online Review Analysis TriggeringHype in the Motion Picture Industry Timothy Rey Laheba; Paulus Wisnu Anggoro
Indonesian Journal of Information Systems Vol. 4 No. 1 (2021): August 2021
Publisher : Program Studi Sistem Informasi Universitas Atma Jaya Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24002/ijis.v4i1.4528

Abstract

Competition in the motion picture industry continues to intensify at a very rapid pace. This phenomenon makes the production house continue to try to look for new ways to maximize revenue from the short life cycle of a film. One of the variables currently playing a larger role in decision-making to watch a film is a review. Two types of reviews are often used in the motion picture industry, namely the reviews from critics and fellow consumers. This study tries to see whose review will trigger a hype or buzz that much needed in the motion picture industry. Data from 219 respondents were collected to see their response regarding a review and whose review will encourage them to talk about a film to their peers and ultimately create the hype needed by a film. There are different perceptions for reviews given by critics, and fellow consumers with reviews from fellow consumers have greater potential to create and ignite hype in the motion picture industry.
Perilaku Penyerapan Air Terhadap Sifat Mekanik Biokomposit Serat Kenaf/Rami Haniel Haniel; Baju Bawono; Paulus Wisnu Anggoro
Jurnal Rekayasa Mesin Vol 18, No 1 (2023): Volume 18, Nomor 1, April 2023
Publisher : Mechanical Engineering Department - Semarang State Polytechnic

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32497/jrm.v18i1.3997

Abstract

Penggunaan komposit yang diperkuat serat alam berkembang pesat di industri otomotif. Biokomposit adalah material komposit yang terdiri dari matriks polimer dan penguat serat alami. Serat alam dapat menggantikan bahan tradisional yang tidak terbarukan. Namun, biokomposit memiliki daya serap air, yang dapat mempengaruhi sifat mekanik yang menentukan kualitas biokomposit dalam aplikasi otomotif. Oleh karena itu, perlu dilakukan pemeriksaan pengaruh perilaku penyerapan air pada biokomposit yang dapat mempengaruhi sifat mekanik. Hasil penelitian ini menunjukkan bahwa perilaku penyerapan air biokomposit berpengaruh positif. Terjadi peningkatan nilai kekuatan impak dari 0.24 menjadi 0.27 (J/mm2), begitu juga dengan nilai kekuatan lentur dari 94.86 menjadi 96.74 (MPa). Temuan yang didapat dalam penelitian ini melengkapi analisis pada penelitian sebelumnya, biokomposit cocok digunakan dalam aplikasi luar ruangan seperti komponen pada kendaraan.
Optimization of Quality Improvement and Production Capacity at Prayogo's Chicken Slaughterhouse SME Tonny Yuniarto; Paulus Wisnu Anggoro; Baju Bawono
Journal of Innovation and Community Engagement Vol. 3 No. 4 (2022)
Publisher : Faculty of Smart Technology and Engineering, Universitas Kristen Maranatha, Bandung, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.28932/ice.v3i4.5577

Abstract

Moyudan Subdistrict is an area that has several small industries of chicken farming. Partner who was the participant of this community service program, Prayogo’s Chicken Slaughterhouse, an SME in Yogyakarta, had a major obstacles to increase the production capacity of good, neat, clean, and hygienic chicken meat and meeting halal standards. In addition, this business still did not have chicken cutting standards according to factory standards (SNI 01-6160-1999). The cutting process was still done manually and conventionally, with mediocre quality and quantity. Production capacity was low, and many production operators experienced high fatigue in the hands and shoulders or experienced musculoskeletal fatigue. The expected transfer of technology in this program is the design of modifications to poultry cutting machines that suit the needs of this partner and is associated with the selection of portable poultry machine designs and manufacturing technologies that can later improve the quality and capacity of chicken meat processing according to halal standards. The results of this community service activity are; (1) one unit of portable poultry machine given to partner; (2) an increase in production capacity of 429% in terms of cutting capacity per day with smooth, precise, and accurate cutting quality; (3) reduced fatigue experienced by the production operators after the machine in operation. The chicken cutting capacity of Prayogo's Chickens Slaughterhouse can be increased by 4.29 times from 75 chickens a day to a maximum of 321 chickens a day.
Design and Development of a Dual-Mode Smart Wheelchair Prototype with Obstacle Detection for Zimbabwe Savior Munotyaani; Nugroho Mamayu Hayuning Bawono; Nicholas Tayisepi; Innocent Mapindu; Paulus Wisnu Anggoro; Baju Bawono; Anugrah Kusumo Pamosoaji; Albertus Yustinus Novi Misgi Prabowo Adi Adi
Jurnal Rekayasa Mesin Vol. 21 No. 1 (2026): Volume 21, Nomor 1, April 2026
Publisher : Mechanical Engineering Department - Semarang State Polytechnic

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32497/jrm.v21i1.6954

Abstract

Conventional and electric wheelchairs are often unable to fully meet the needs of users with upper-body movement limitations, particularly in terms of device control and surrounding environment detection. In addition, existing smart wheelchairs are generally expensive, difficult to customize, and have not been widely accepted by users. This study aims to design a smart wheelchair that integrates voice control, joystick control, and an obstacle detection system to enhance user safety, accessibility, and independence.The design process was carried out systematically through functional decomposition, concept development, and design selection for the frame structure, control system, and motor drive circuit components. The system was developed using an Arduino microcontroller, Voice Recognition Module V3.1, HC-SR04 ultrasonic sensors, an analog joystick, and an L298N motor driver. The prototype successfully integrated two control modes with an aluminum frame capable of supporting loads of up to 150 kg. The obstacle detection system operated effectively within a 50 cm radius to automatically prevent collisions. However, the voice recognition module still encountered technical issues, such as errors during voice training, indicating the need for more reliable hardware solutions.The results demonstrate that the proposed design has significant potential to support the mobility of people with disabilities through enhanced safety features and flexible control mechanisms. Further development is required to improve the reliability of the voice recognition system and to expand the application of assistive technologies for improving users’ quality of life.