Enhancing Energy Efficiency and Real-time Monitoring in Industrial Environments through an Integrated Software Solution: NIGHTWATCH

Kader Ni̇kbay, Kenan Selçuk, T. Bilgin
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Abstract

Globally, the demand for energy continues to escalate due to factors such as heating, lighting, transportation, and fuel supply for various devices. In a context where energy has garnered such paramount importance, achieving energy efficiency has necessitated a comprehensive approach encompassing activities related to energy generation, transmission, and consumption. Any positive or negative developments in the realm of energy significantly impact both human and environmental factors, which constitute the focal points of sustainable development. The presented study, operates within industrial settings and interfaces with energy analyzers, collecting and analyzing data such as energy consumption, instantaneous current, and voltage. This initiative seeks to provide real-time visibility into energy-related operations on factory premises. Additionally, the software's capabilities extend to retrospective data analysis, enabling informed insights for future extrapolations. Furthermore, the integration of energy consumption data from the analyzers into the Manufacturing Execution System (MES) facilitates energy tracking on a per-job basis. The software's dashboard component empowers users to establish customized threshold values for monitored energy parameters. When these thresholds are exceeded or when values deviate from expected levels, the software triggers alerts and notifications via email and other communication channels, ensuring timely dissemination of pertinent information. Consequently, the software allows businesses to evaluate unit costs associated with specific job orders. Additionally, the study aims to establish a correlation between energy consumption data at the job-order level and machine-level energy consumption. This correlation could foster the augmentation of efficient energy utilization, thereby enhancing competitiveness and overall efficacy.
通过集成软件解决方案提高工业环境的能效和实时监控:夜视仪
在全球范围内,由于供暖、照明、运输和各种设备的燃料供应等因素,对能源的需求持续上升。在能源变得如此重要的情况下,要实现能源效率,就必须采取全面的方法,包括与能源生产、传输和消费相关的活动。能源领域的任何积极或消极发展都会对人类和环境因素产生重大影响,而这正是可持续发展的焦点所在。本项研究在工业环境中进行,并与能源分析仪连接,收集和分析能源消耗、瞬时电流和电压等数据。这一举措旨在提供工厂能源相关操作的实时可视性。此外,该软件的功能还可扩展到回顾性数据分析,为未来的推断提供明智的见解。此外,将来自分析仪的能源消耗数据集成到制造执行系统(MES)中,有助于按工作进行能源跟踪。该软件的仪表板组件使用户能够为监测到的能源参数设定自定义阈值。当超出这些阈值或数值偏离预期水平时,软件会通过电子邮件和其他通信渠道触发警报和通知,确保及时传播相关信息。因此,该软件允许企业评估与特定工作订单相关的单位成本。此外,该研究还旨在建立工作订单级能耗数据与机器级能耗之间的相关性。这种关联可以促进提高能源利用效率,从而增强竞争力和整体效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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