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article · Computer Science & IT Research Journal

Policy-Driven approaches to industrial energy efficiency through IoT-enabled predictive maintenance

20242 citationsOpen accessRedeemer's University

Abstract

Industrial energy efficiency is a critical component of sustainable development, necessitating the adoption of innovative technologies to reduce energy consumption and environmental impact. This paper explores the role of policy-driven approaches in enhancing industrial energy efficiency through the integration of IoT-enabled predictive maintenance systems. Predictive maintenance, powered by the Internet of Things (IoT), allows industries to monitor equipment in real-time, predict potential failures, and optimize maintenance schedules. This proactive approach not only minimizes downtime and maintenance costs but also significantly reduces energy wastage, contributing to overall energy efficiency. The paper discusses the necessity of robust policy frameworks that support the widespread adoption of IoT technologies in industrial settings. Key policy measures include incentives for IoT implementation, regulatory standards for energy-efficient practices, and the development of industry-specific guidelines to ensure effective integration. Furthermore, the paper examines the role of government and industry collaboration in creating a conducive environment for innovation and investment in IoT-enabled energy solutions. Through case studies and examples, the paper illustrates successful applications of IoT-enabled predictive maintenance in various industrial sectors, highlighting the substantial energy savings and operational efficiencies achieved. It also addresses the challenges faced in policy implementation, such as the need for skilled workforce development, cybersecurity concerns, and the initial cost of IoT integration. Finally, the paper provides recommendations for policymakers to enhance the adoption of IoT-enabled predictive maintenance, emphasizing the importance of continuous policy refinement to keep pace with technological advancements. This approach is vital for driving industrial energy efficiency, reducing carbon footprints, and achieving long-term sustainability goals. Keywords: Industrial Energy Efficiency, Iot-Enabled Predictive Maintenance, Policy-Driven Approaches, Sustainable Development, Real-Time Monitoring, Energy Savings, Regulatory Standards, Government-Industry Collaboration

Research topics

  • Energy Efficiency and Management

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DOI: 10.51594/csitrj.v5i9.1555

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