Tag: kampus swasta terbaik di bandung

  • Design of Non-Organic Trash Processing Machine Based on Solar Panels in Tourism Village

    Design of Non-Organic Trash Processing Machine Based on Solar Panels in Tourism Village

    Author: Eddy Soeryanto Soegoto, Theresia Valentina Lumban Gaol, Chepi Nur Albar, Natasha Puspa Dewi

    Abstract

    This research is being carried out to assist in achieving the Sustainable Development Goals (SDGs) through trash management by reducing the household trash volume and environmental pollution. The trash volume is reduced by designing a trash counting device using the Pahl and Beitz design method and the Indonesian National Standard 3242:2008, which is then analysed qualitatively. According to the findings of this study, the trash volume generated in the Cibeusi Tourism Village over the next five years (2022-2026) will be 13-14 m3/person/day. The structure of the trash shredder consists of a trash entrance, trash tank, blade housing, and trash screen. The population in the Cibeusi Tourism Village is taken into account in the trash projected volume analysis, which is adjusted to the formula provisions of the Indonesian National Standard 3242:2008. The shredder machine, on the other hand, has a trash tank size of 55 cm x 52 cm x 15 cm and is supported by 10 disc-shaped cutting blades with a diameter of 17 cm and a thickness of 2 cm. This machine is used to reduce the volume of trash piles by shredding the trash into small pieces. It is expected that this research will support in making the Cibeusi Village community to manage trash directly rather than relying on the government’s trash transportation schedule to accelerate trash decomposition as well as reduce air and environmental pollution caused by burning and landfilling activities. © School of Engineering, Taylor’s University.

    Keywords: Environmental; Machine; SDGs; Trash management

    This article can be accessed at https://www.scopus.com/pages/publications/85145367244

  • Techno-Economic Evaluation of Biodiesel Production from Edible Oil Waste via Supercritical Methyl Acetate Transesterification

    Techno-Economic Evaluation of Biodiesel Production from Edible Oil Waste via Supercritical Methyl Acetate Transesterification

    Author: Asep Bayu Dani Nandiyanto, Eddy Soeryanto Soegoto, Safta Ananda Maulana, Axel William Fritz Setiawan, Fadel Shal Almay, Muhammad Ridwan Hadinata, Risti Ragadhita, Senny Luckyardi

    DOI: 10.4314/njtd.v19i4.6

    Abstract

    This study aimed to assess the economic and engineering feasibility of a large-scale biodiesel manufacturing operation from edible oil waste. The edible oil model used for economic analysis in this study is palm oil waste. Several economic parameters (i.e., gross profit margin (GPM), payback period (PBP), break-even point (BEP), cumulative net present value (CNPV), profitability index (PI)), and internal rate return (IRR) were examined to inform the potential production of biodiesel from edible oil waste in ideal condition. To confirm the feasibility of a manufacturing project, the project is estimated from ideal to worst-case conditions in production activities such as analysis of changing raw material, labor, tax, utility, and selling price costs. Based on an engineering perspective, the result indicated that biodiesel production from edible and non-edible oil is feasible. From an economic perspective, economic analysis shows that biodiesel production from edible oil waste is promising because the economic parameters as analyzed show positive results. Our findings are expected to provide an industrial-scale picture of economic evaluation and layout, particularly in the production of biodiesel, which is commonly used as a renewable energy source for fuel in trucks, trains, ships, and barges. © 2022, University of Ilorin, Faculty of Engineering and Technology. All rights reserved.

    Keywords: Biodiesel; Cumulative net present value; Economic evaluation; Edible oil waste; Engineering evaluation; Transesterification

    This article can be accessed at https://www.scopus.com/pages/publications/85146388324

  • A Comprehensive Review of COBIT and ISO 27001: Approaches to Auditing Credit Bureau Automation System (CBAS) at PT XYZ

    A Comprehensive Review of COBIT and ISO 27001: Approaches to Auditing Credit Bureau Automation System (CBAS) at PT XYZ

    Authors: Reyhan Syafier Al Hadad ; Hanhan Maulana

    DOI: 10.1109/ICSPIS59665.2023.10402713

    Abstract:

    This study evaluates, compares and discuss the approaches of COBIT and ISO 27001 in auditing the Credit Bureau Automation System (CBAS) at PT XYZ. The authors employ a qualitative comparative analysis to explore and synthesize qualitative information from scholarly sources. This study concludes that ISO 27001 is better suited for auditing CBAS as it has a strong focus on information security and risk management, as well as flexibility to tailor to client needs. In contrast, COBIT has a more generalized scope and covers broader IT topics. However, the authors suggest that both frameworks can complement each other in an audit, depending on the organization’s specific needs. This study also highlights the strengths of COBIT, such as its comprehensive framework that enables organizations to attain their goals in corporate IT governance and management, and suggests a simplified IT risk management maturity audit system based on ‘COBIT 5 for Risk’ to evaluate the maturity of IT risk management in an organization. Overall, this study provides valuable insights into the applicability of COBIT and ISO 27001 in auditing CBAS and offers suggestions for organizations to improve their IT governance and risk management practices. © 2023 IEEE.

    Author Keywords:

    auditing; COBIT; Credit Bureau Automation System (CBAS); ISO 27001; risk management

    This article can be accessed at https://www.scopus.com/pages/publications/85184851519

  • A Smart Home Architecture for Energy Conservation and Multiple Energy Source Management

    A Smart Home Architecture for Energy Conservation and Multiple Energy Source Management

    Authors: Indra Kurniawan ; Irfan Dwiguna Sumitra

    DOI: 10.37934/araset.31.2.101116

    Abstract:

    Smart home architecture has been widely applied in energy conservation efforts by improving control and monitoring of energy use. Energy conservation efforts can be made by controlling energy consumption and accommodating other energy sources that are environmentally friendly or renewable. Renewable energy sources can now be built quickly and affordably, for example, solar panels. This study aims to build a smart home architecture that prioritizes energy conservation and managing multiple energy sources. The method used in this research is applying the Fuzzy Multi-criteria Decision Making model and Artificial Neural Network embedded in the Single Board Computer and ESP8266 system with the Internet of Things concept. This research results in an intelligent hardware architecture and software system that can be controlled via a smartphone or PC for energy-saving efforts increasing awareness of energy use and managing multiple energy sources that are affordable and easy to implement at home. © 2023, Penerbit Akademia Baru. All rights reserved.

    Author Keywords:

    Artificial Neural Network; energy conservation; Esp8266; Fuzzy Multi-Criteria Decision Making; Internet of Things; multiple energy source management; Smart Home


    This article can be accessed at https://www.scopus.com/pages/publications/85168135926

  • An Augmented Reality-Based Lipstick Color Recommendation System Model to Help Prevent COVID-19 Spreadness

    An Augmented Reality-Based Lipstick Color Recommendation System Model to Help Prevent COVID-19 Spreadness

    Authors: Agustia R.D. ; Bryllyantri A.

    DOI: 10.1063/5.0128549

    Abstract:

    The aim of this research is to provide lipstick color recommendations based on the analogous color theory. The recommended lipstick color is based on the user’s skin tone color, where the skin color that is taken is the skin of lip color. Facial landmark detection will be used as a method to detect the position of the user’s lips where the recommended lipstick color results can be seen in the form of augmented reality. To find out what lipstick products are used as the basis for lipstick color recommendations, questionnaires were distributed using random sampling to 100 female respondents, and data was sorted to obtain the three products that were most widely used by female respondents in Indonesia. Based on the results of the questionnaire the products most widely used by respondents are Wardah, Makeover, and Emina products. The results of the research is lipstick color recommendation system model based on the user’s skin tone color using augmented reality facial landmark detection method. Based on performance testing, detection can be carried out well with the criteria that the face is facing the camera with a tilt position of 0 °-45 °, the optimal distance between the camera and the face is 20-80 cm, and with optimal lighting using 40W incandescent lamp or 8 W-23W fluorescent lamp. During the COVID-19 pandemic, using lipstick product samples at the same time will increase the risk of contracting COVID-19 so the lipstick color recommendation system will be an alternative to help prevent COVID-19 spreads. © 2023 Author(s).

    Author Keywords:

    Augmented reality; lipstick color recommendation system


    This article can be accessed at https://www.scopus.com/pages/publications/85177603924

  • Optimized PID Control for Enhanced Electric Power Steering System Performance

    Optimized PID Control for Enhanced Electric Power Steering System Performance

    Authors: Rodi Hartono ; Hyun Rok Cha ; Kyoo Jae Shin

    DOI: 10.1109/INCITEST64888.2024.11121507

    Abstract:

    This research investigates the application of a proportional-integral-derivative (PID) controller for controlling an electric power steering (EPS) system equipped with a brushless direct current (BLDC) motor. EPS is an advanced automotive technology to assists drivers by reducing the physical effort needed to steer a vehicle and enabling precise computer-controlled steering in autonomous vehicles. EPS systems offer significant benefits over traditional hydraulic systems, including improved energy efficiency and steering precision. While EPS systems can present challenges due to their nonlinear characteristics, this study focuses on their linear range where the PID controller’s simplicity and effectiveness are beneficial. By optimizing PID parameters, the controller achieved precise tracking, fast transient response, and minimal steady-state error. Performance evaluation using a ± 10° angle target showed a rise time of 0.155 seconds, a settling time of 0.307 seconds, and an overshoot of 3.6% for a +10° target, and a rise time of 0.155 seconds, a settling time of 0.310 seconds, and an overshoot of 3.3% for a -10 target. These results show the PID controller’s capability to deliver consistent and accurate control in the EPS system, particularly when operating within its linear range. © 2024 IEEE.

    Author Keywords:

    electric power steering; linear operating range; nonlinear characteristics; PID controller; steering precision


    This article can be accessed at https://www.scopus.com/pages/publications/105015855979

  • Implementation of Microhydro Power Plants in Remote and Undeveloped Areas

    Implementation of Microhydro Power Plants in Remote and Undeveloped Areas

    Authors: Herry Saputra ; Alfi Nurakbar ; Hendri Praminiarto ; Agus Mulyadi ; Dedi S. Soegoto

    DOI: –

    Abstract:

    Electric energy is a vital element for the Indonesian community. However, in frontier, underdeveloped, and remote areas, access to electricity is uneven. An appropriate solution is necessary to overcome these supply limitations. This research aims to construct a micro hydro power plant utilizing existing river flows. The research employed descriptive analysis with a qualitative approach, while the equipment’s performance analysis used the fuzzy time series method. Findings indicate that micro hydro technology can generate up to 40 kW using four generators, relying on a minimum river flow rate of 60 litters per second. This system can meet the needs of 72 households with a lifespan of up to 15 years. The core concept was to use river flow to drive turbines, generating electrical power. Consequently, the government can minimize electricity development costs from major urban centres. Ultimately, micro hydro power generation technology serves as a solution for frontier, remote, and underdeveloped areas, providing access to electricity and illumination, and supporting the community’s living requirements. © 2024 Taylor’s University. All rights reserved.

    Author Keywords:

    Electric energy; Fuzzy time series; Micro hydro power plant

    This article can be accessed at https://www.scopus.com/pages/publications/85184612265

  • The Role of Environmental Policy in Promoting Green Transportation Technologies

    The Role of Environmental Policy in Promoting Green Transportation Technologies

    Authors: Siphimvadee Suthakavatin ; Khodor Shatila ; Karine Aydinyan ; Raeni Dwi Santy

    DOI: 10.1051/bioconf/202414506013

    Abstract:

    This study explores the role of environmental policy in promoting the adoption of green transportation technologies, focusing on the effects of financial incentives, regulatory frameworks, and public investment in infrastructure across key Asian urban centres. The research highlights how technological innovation acts as a crucial mediator between policy measures and the adoption of sustainable transportation options such as electric vehicles (EVs) and hydrogen-powered vehicles. Using Structural Equation Modelling (SEM), the study examines the relationships between these factors, demonstrating that higher levels of financial incentives, supportive regulations, and strategic public investment lead to significant advancements in technological innovation, which in turn drives the adoption of green transportation technologies. The findings contribute to the broader understanding of sustainable urban mobility solutions and offer important insights for policymakers and industry stakeholders in regions experiencing rapid urbanization. The study also discusses the dual role of these policy drivers, both in directly influencing adoption and in fostering technological advancement. © The Authors, published by EDP Sciences.


    This article can be accessed at https://www.scopus.com/pages/publications/85216661038

  • Analysis of Solar Powered Public Street Lighting Design (PJUTS)

    Analysis of Solar Powered Public Street Lighting Design (PJUTS)

    Authors: Sutono S.; Chepi Nur Albar

    DOI: –

    Abstract:

    This research aimed to propose and demonstrate a Solar-Powered Public Street Lighting lamps concept as part of a Community Service (PKM) initiative conducted at the Halim Cluster Housing Complex in West Bandung Regency. The study employed an experimental method combined with product design. The findings revealed that the solar-powered Public Street Lighting (PJU) design offers an innovative and environmentally friendly solution to meet public lighting needs. The calculation and testing involved 5V/12W LED lights, 12V/50Wp solar panels, a 10A charge controller, and 12V/30Ah lithium batteries. The solar-powered street lighting system can operate for 12 hours, even under sunny and cloudy conditions. © 2025 Taylor’s University. All rights reserved.

    Author Keywords:

    Battery; Charge control; Complex; Housing; LED


    This article can be accessed at : https://www.scopus.com/pages/publications/85214486386

  • A Modular Intelligent System for Energy Saving Using Fuzzy Logic and Artificial Neural Network Based on the Concept of Internet of Things

    A Modular Intelligent System for Energy Saving Using Fuzzy Logic and Artificial Neural Network Based on the Concept of Internet of Things

    Authors: Fadhila Azzahra ; Rahma Wahdiniwaty

    DOI: 10.1063/5.0255654

    Abstract:

    The purpose of this research is to build an intelligent system of control and monitoring of electrical energy at home and to find out the amount of efficiency that can be achieved after implementing a control and monitoring system of daily electrical energy at home. The use of electrical at home is a waste of energy which of course is often not realized by the users. Even though, this is caused by the many uses of electronic devices at home that must be used and live continuously, for example: the use of lights, water heater, Air Conditioners (AC) and others. Although these devices can be set up and work automatically, automatic devices only rely on time and condition variables. To save energy more efficient, homes need to be equipped with intelligent systems that can be control and turn on electronic devices only when needed. The method that will be applied in this research is by combining fuzzy logic and the integration of Artificial Neural Network (ANN). Besides that, this system will be built using the concept of IoT (Internet of Things). The result of this research is produced an IoT device for intelligent Controlling and Monitoring of Electrical Energy with fuzzy logic and ANN methods. This current research is developing an ESP32-based smart device for the internet of things that can be used to monitor and control electrical energy using fuzzy logic and Artificial Neural Network (ANN) methods. However, current research has found that this device can improve energy consumption at home by 28-37%. © 2025 Author(s).

    Author Keywords:

    Artificial Neural Network; Energy Saving; Fuzzy Logic; Internet of Things


    This article can be accessed at https://www.scopus.com/pages/publications/85219185646