Impact of Industry 4.0 on corporate environmental sustainability: Comparing practitioners’ perceptions from China, Brazil and Germany DOI Creative Commons
Grischa Beier,

Marcel Matthess,

Ting Guan

и другие.

Sustainable Production and Consumption, Год журнала: 2022, Номер 31, С. 287 - 300

Опубликована: Фев. 25, 2022

Industrial production needs to be fundamentally transformed if the UN Sustainable Development Goals shall met. Digital technologies can potentially drive such a sustainable transformation, but two main objectives of environmental sustainability must considered for achieving this target: decarbonisation and dematerialisation. We empirically investigate potentials these by employing survey-based approach, investigating companies' developments in China, Brazil, Germany, variety industrial sectors, companies different sizes. These cases provide insight on multi-country perspective into digitalisation countries with pre-conditions digital which is novelty research field. show that even though most practitioners expect an improvement their respective company due application Industry 4.0 technologies, factual improvements resource efficiency energy consumption are not expected develop similarly optimistic fashion. findings challenge assumed effects discussed vast majority prior literature expresses high hopes positive impacts . This interpreted as indication will automatically lead instead transformation towards more economy accompanied supporting measures. On side we find higher current level companies, greater ability match supply actual demand likelihood participating Demand Response schemes. important prerequisite stabilisation efficient use future renewable systems. Our study provides insights policy makers also fellow researchers regarding trends implementation how far they support sustainability. conclude concept should always critically evaluated against background SDGs supplemented combination regulation incentives through governing bodies, includes setting binding targets saving material reducing non-recyclable waste.

Язык: Английский

Substantial capabilities of robotics in enhancing industry 4.0 implementation DOI Creative Commons
Mohd Javaid, Abid Haleem, Ravi Pratap Singh

и другие.

Cognitive Robotics, Год журнала: 2021, Номер 1, С. 58 - 75

Опубликована: Янв. 1, 2021

There is the increased application of new technologies in manufacturing, service, and communications. Industry 4.0 fourth industrial revolution, which supports organisational efficiency. Robotics an important technology 4.0, provides extensive capabilities field manufacturing. This has enhanced automation systems does repetitive jobs precisely at a lower cost. progressively leading to manufacturing quality products while maintaining value existing collaborators schemes. The primary outcome intelligent factories developed with aid advanced robotics, massive data, cloud computing, solid safety, sensors, Internet things, other technological developments be highly powerful, safe, cost-effective. Thus, businesses will refine their for mass adaptation by improving workplace's safety reliability on actual work saving costs. paper discusses significant potential allied areas. eighteen major applications 4.0. Robots are ideal collecting mysterious data as they operate closer component than most factory machines. helpful perform complex hazardous job, automation, sustain high temperature, working entire time long duration assembly lines. Many robots operating use artificial intelligence high-level tasks. Now can also decide learn from experience various ongoing situations.

Язык: Английский

Процитировано

369

Identifying industry 5.0 contributions to sustainable development: A strategy roadmap for delivering sustainability values DOI Creative Commons
Morteza Ghobakhloo, Mohammad Iranmanesh, Muhammad Faraz Mubarak

и другие.

Sustainable Production and Consumption, Год журнала: 2022, Номер 33, С. 716 - 737

Опубликована: Авг. 5, 2022

Scholars believe that the newly introduced Industry 5.0 has potential to move beyond profit-centered productivity of 4.0 and promote sustainable development goals such as human-centricity, socio-environmental sustainability, resilience. However, little been done understand how this ill-defined phenomenon may deliver its indented sustainability values despite these speculative promises. To address knowledge gap, present study developed a strategy roadmap explains mechanism by which delivers intended functions. The first reference model describes technical functional properties phenomenon. further conducted content-centric synthesis literature identified functions 5.0. Next, interpretive structural modeling (ISM) technique was employed identify sequential relationships among construct 5.0-enabled development. ISM involved collecting opinions 11 experts through expert panel meetings. Results revealed 16 Circular intelligent products, employee assistance, automation, open innovation, renewable integration, supply chain adaptability are examples identified. These highly interrelated should be in specific order so synergies complementarities them would maximize value gains. 5.0-driven is expected provide better understanding ways can contribute development, explaining managed their contribution values. also highlights important avenues for future research, emphasizing enablers Government or Corporate Governance

Язык: Английский

Процитировано

287

Industry 4.0, innovation, and sustainable development: A systematic review and a roadmap to sustainable innovation DOI Open Access
Morteza Ghobakhloo, Mohammad Iranmanesh, Andrius Grybauskas

и другие.

Business Strategy and the Environment, Год журнала: 2021, Номер 30(8), С. 4237 - 4257

Опубликована: Авг. 3, 2021

Abstract Despite the recent interest in Industry 4.0 applications for sustainability, little is known on processes through which digital transformation and technologies enable sustainable innovation manufacturing. The present study addresses this knowledge gap by developing a strategic roadmap that explains how businesses can leverage to introduce sustainability into innovative practices. For purpose, conducts systematic review of extant literature identify functions applies interpretive structural modeling devise promised roadmap. results offer interesting insights innovation. developed reveals enables 11 functions. underlying principles allow improve interfunctional collaboration better integrate with internal external stakeholders. further improves base advanced manufacturing competency promotes organizational capabilities valuable such as green absorptive capacity, partnership, orientation. Through these functions, subsequently enhances process capacity ability develop or reintroduce eco‐friendly products economically competitively. Overall, complex precedence relationships among 4.0, offering important implications seek manage development.

Язык: Английский

Процитировано

256

Assessing the impact of industrial robots on manufacturing energy intensity in 38 countries DOI
En‐Ze Wang, Chien‐Chiang Lee, Yaya Li

и другие.

Energy Economics, Год журнала: 2021, Номер 105, С. 105748 - 105748

Опубликована: Дек. 2, 2021

Язык: Английский

Процитировано

196

Carbon emission reduction effects of industrial robot applications: Heterogeneity characteristics and influencing mechanisms DOI
Yaya Li, Yuru Zhang, An Pan

и другие.

Technology in Society, Год журнала: 2022, Номер 70, С. 102034 - 102034

Опубликована: Июнь 21, 2022

Язык: Английский

Процитировано

142

How does the use of industrial robots affect the ecological footprint? International evidence DOI
Yang Chen, Liang Cheng, Chien‐Chiang Lee

и другие.

Ecological Economics, Год журнала: 2022, Номер 198, С. 107483 - 107483

Опубликована: Май 20, 2022

Язык: Английский

Процитировано

128

Behind the definition of Industry 5.0: a systematic review of technologies, principles, components, and values DOI Creative Commons
Morteza Ghobakhloo, Mohammad Iranmanesh, Ming‐Lang Tseng

и другие.

Journal of Industrial and Production Engineering, Год журнала: 2023, Номер 40(6), С. 432 - 447

Опубликована: Май 27, 2023

This study addresses the emerging concept of Industry 5.0, which aims to tackle societal concerns associated with ongoing digital industrial transformation. However, there is still a lack consensus on definition and scope as well limited understanding its technological components, design principles, intended values. To bridge these knowledge gaps, conducts content-centric review relevant literature synthesizes evidence develop an architectural for 5.0. The findings reveal that 5.0 represents future transformation, offering potential solutions socio-economic environmental issues were inadequately addressed or exacerbated by 4.0. provides managers, industrialists, policymakers comprehensive overview including constituents, smart emphasizing importance stakeholder involvement integration effective governance transformation within this framework.

Язык: Английский

Процитировано

114

Actions and approaches for enabling Industry 5.0‐driven sustainable industrial transformation: A strategy roadmap DOI Creative Commons
Morteza Ghobakhloo, Mohammad Iranmanesh, Manuel Morales

и другие.

Corporate Social Responsibility and Environmental Management, Год журнала: 2022, Номер 30(3), С. 1473 - 1494

Опубликована: Дек. 8, 2022

Abstract Although Industry 4.0 was believed to promote sustainable development, it has ignored or misunderstood many prevailing sustainability concerns, which led the emergence of 5.0 agenda. While desirable values are widely acknowledged, knowledge how this agenda can deliver transformation is lacking. The present study addresses gap, explaining should be managed facilitate development. Therefore, strives model underlying mechanism for enabling such transformation. conducted a content‐centric review literature and identified 11 actions approaches that serve as enablers further interpretive structural modeling structured an steps needed 5.0. Finally, developed strategy roadmap Results emphasized stakeholder salience, highlighting role integration collaboration in Proactive governmental support most driving enabler 5.0, whereas eco‐innovation value network reformation among complex hard‐to‐develop enablers. offer several implications policymakers practitioners, functionality each approach necessary determines sequential relationships these strategies identifies their optimal development sequence synergistically. identify codependences transition highlight interactions complementarities.

Язык: Английский

Процитировано

109

Energy System 4.0: Digitalization of the Energy Sector with Inclination towards Sustainability DOI Creative Commons
Rajesh Singh, Shaik Vaseem Akram, Anita Gehlot

и другие.

Sensors, Год журнала: 2022, Номер 22(17), С. 6619 - 6619

Опубликована: Сен. 1, 2022

The United Nations’ sustainable development goals have emphasized implementing sustainability to ensure environmental security for the future. Affordable energy, clean and innovation in infrastructure are relevant that applied energy sector. At present, digital technologies a significant capability realize target of energy. With this motivation, study aims discuss significance different such as Internet Things (IoT), artificial intelligence (AI), edge computing, blockchain, big data their implementation stages generation, distribution, transmission, smart grid, trading. also discusses architecture has been implemented by previous studies grid computing. Additionally, we addressed IoT-based microgrids, IoT services electrical equipment, blockchain-based Finally, article challenges recommendations effective sector meeting sustainability. Big analytics, twins modeling, virtual power plants with Metaverse, green major vital discussed future enhancement.

Язык: Английский

Процитировано

100

Energy Management Systems in Sustainable Smart Cities Based on the Internet of Energy: A Technical Review DOI Creative Commons
Priyanka Mishra, Ghanshyam Singh

Energies, Год журнала: 2023, Номер 16(19), С. 6903 - 6903

Опубликована: Сен. 30, 2023

In this paper, we exploit state-of-the-art energy management in sustainable smart cities employing the Internet of Energy (IoE). The primary goal study is to leverage cutting-edge techniques through IoE bring about significant improvements clean processes while targeting environmental benefits, efficiency enhancements, sustainability, and cost reduction. work, present a comprehensive exploration strategies within context IoE-enabled cities. Firstly, provide detailed classification diverse approaches pertinent IoE-based This covers spectrum methodologies, including scheduling optimization, design low-power device transceivers, cognitive frameworks, integration cloud computing technology. Furthermore, highlight pivotal role grids as fundamental elements establishment Within context, offer overview essential components that underlie grids, with notable focus on intricate realm micro/nanogrids. Moreover, our research delves comprehensively into harvesting We analyze crucial facets like receiver design, optimization methods, variety sources, efficient approaches, effective routing mechanisms. Additionally, delve multifaceted nature across various domains. Our investigation reaches its culmination creation novel conceptual framework identification enabling technologies centered management. Lastly, contribute field by outlining current challenges mapping potential directions relevant cities, capitalizing capabilities IoT.

Язык: Английский

Процитировано

100