A Survey on Product of Smart Service System

  • Moh. Roufiq Azmy Institut Teknologi Bandung
Keywords: smart service system, product-service system, service design

Abstract

Smart service is a new value that results from a collaboration between service providers and service users. Company as a service provider transformed not only provide a physical product, but also provide services. We conducted this research to integrate knowledge between smart products and smart service systems. The conceptualization of smart products is done by conducting a literature study of previous research. It is used to obtain the characteristics of smart products on smart service systems. This research also presents various topics and research focus in the context of products on smart service systems by including several smart service system implementations and illustration of smart product.

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References

U. Gretzel, M. Sigala, Z. Xiang, and C. Koo, “Smart tourism: foundations and developments,” Electron. Mark., vol. 25, no. 3, pp. 179–188, Sep. 2015.

S. K. Das, “Mobility management—A personal perspective,” Comput. Commun., vol. 131, pp. 26–31, Oct. 2018.

A. Valencia, R. Mugge, J. P. L. Schoormans, H. N. J. Schifferstein, and R. Schifferstein, “The Design of Smart Product-Service Systems (PSSs): An Exploration of Design Characteristics,” Int. J. Des., vol. 9, no. 1, pp. 13–28, 2015.

J. Anke, “Design-integrated financial assessment of smart services,” Electronic Markets, Springer Berlin Heidelberg, pp. 1–17, 01-Jun-2018.

T. Gavrilova and L. Kokoulina, “Smart Services Classification Framework,” in Position Papers of the 2015 Federated Conference on Computer Science and Information Systems, 2015, vol. 6, pp. 203–207.

R.-B. Wiegard and M. H. Breitner, “Smart services in healthcare: A risk-benefit-analysis of pay-as-you-live services from customer perspective in Germany,” Electron. Mark., pp. 1–17, 2017.

S. Dreyer, D. Olivotti, B. Lebek, and M. H. Breitner, “Focusing the customer through smart services: a literature review,” Electron. Mark., 2019.

K. Laubis, M. Konstantinov, V. Simko, A. Gröschel, and C. Weinhardt, “Enabling crowdsensing-based road condition monitoring service by intermediary,” Electron. Mark., pp. 1–16, 2018.

D. Beverungen, O. Müller, M. Matzner, J. Mendling, and J. vom Brocke, “Conceptualizing smart service systems,” Electron. Mark., pp. 1–12, Nov. 2017.

D. Beverungen, M. Matzner, and C. Janiesch, “Information systems for smart services,” Inf. Syst. E-bus. Manag., vol. 15, no. 4, pp. 781–787, 2017.

V. C. de Oliveira and J. R. Silva, “A service-oriented framework to the design of information system service,” J. Serv. Sci. Res., vol. 7, no. 2, pp. 55–96, Dec. 2015.

M. Fan, J. Sun, B. Zhou, and M. Chen, “The Smart Health Initiative in China: The Case of Wuhan, Hubei Province,” J. Med. Syst., vol. 40, no. 3, p. 62, Mar. 2016.

J. M. Tien, “The next industrial revolution: Integrated services and goods,” J. Syst. Sci. Syst. Eng., vol. 21, no. 3, pp. 257–296, Sep. 2012.

J. Son, J. Park, K. Moon, and Y. Lee, “Resource-aware smart home management system by constructing resource relation graph,” IEEE Trans. Consum. Electron., vol. 57, no. 3, pp. 1112–1119, Aug. 2011.

N. V. Wünderlich, F. V. Wangenheim, and M. J. Bitner, “High Tech and High Touch,” J. Serv. Res., vol. 16, no. 1, pp. 3–20, Feb. 2013.

J. He, Y. Zhang, G. Huang, and J. Cao, “A smart web service based on the context of things,” ACM Trans. Internet Technol., vol. 11, no. 3, pp. 1–23, Jan. 2012.

A. Moawad, T. Hartmann, F. Fouquet, J. Klein, and Y. Le Traon, “Adaptive blurring of sensor data to balance privacy and utility for ubiquitous services,” 2015.

A. Yachir, K. Tari, Y. Amirat, A. Chibani, and N. Badache, “QoS based framework for ubiquitous robotic services composition,” in 2009 IEEE/RSJ International Conference on Intelligent Robots and Systems, IROS 2009, 2009.

L. Hong, Z. She, J. Ye, and X. Chen, “An exploration research of establishing e-service dimensions model by building up service quality indexes based on process interaction,”in 2014 11th International Conference on Service Systems and Service Management (ICSSSM), 2014, pp. 1–5.

H. Lee, H. Seol, H. Min, and Y. Geum, “The identification of new service opportunities: a case-based morphological analysis,” Serv. Bus., vol. 11, no. 1, pp. 191–206, Mar. 2017.

Y. Geum, H. Jeon, and H. Lee, “Developing new smart services using integrated morphological analysis: integration of the market-pull and technology-push approach,” Serv. Bus., vol. 10, no. 3, pp. 531–555, Sep. 2016.

S. Barile and F. Polese, “Smart Service Systems and Viable Service Systems: Applying Systems Theory to Service Science,” Serv. Sci., vol. 2, no. 1–2, pp. 21–40, Jun. 2010.

D. Budaev et al., “Conceptual design of smart farming solution for precise agriculture,” Int. J. Des. Nat. EAcodynamics, vol. 13, no. 3, pp. 307–314, Aug. 2018.

Jing Zhang and Bing Qi, “Studies on interactive service platform for smart grid,” in 2011 IEEE PES Innovative Smart Grid Technologies, 2011, pp. 1–4.

F. Folianto, Y. S. Low, and W. L. Yeow, “Smartbin: Smart waste management system,” in 2015 IEEE Tenth International Conference on Intelligent Sensors, Sensor Networks and Information Processing (ISSNIP), 2015, pp. 1–2.

A. Hammad, F. Vahdatikhaki, C. Zhang, M. Mawlana, and A. Doriani, “Towards the smart construction site: Improving productivity and safety of construction projects using multi-agent systems, real-time simulation and automated machine control,” in Proceedings Title: Proceedings of the 2012 Winter Simulation Conference (WSC), 2012, pp. 1–12.

K. Chopra, P. Moun, and Kapil, “Smart transport recommender system,” in 2017 2nd International Conference on Telecommunication and Networks (TEL-NET), 2017, pp. 1–5.

B. Syed, A. Pal, K. Srinivasarengan, and P. Balamuralidhar, “A smart transport application of cyber-physical systems: Road surface monitoring with mobile devices,” in Proceedings of the International Conference on Sensing Technology, ICST, 2012, pp. 8–12.

E. Zunic, S. Delalic, K. Hodzic, A. Besirevic, and H. Hindija, “Smart Warehouse Management System Concept with Implementation,” in 2018 14th Symposium on Neural Networks and Applications (NEUREL), 2018, pp. 1–5.

Wenyu Li, Lulu Jiang, and Zhenping Li, “Research on the task assignment problem of warehouse robots in the smart warehouse,” in 12th International Symposium on Operations Research and its Applications in Engineering, Technology and Management (ISORA 2015), 2015, p. 5 .-5 .

T. Lin, H. Rivano, and F. Le Mouel, “A Survey of Smart Parking Solutions,” IEEE Trans. Intell. Transp. Syst., vol. 18, no. 12, pp. 3229–3253, Dec. 2017.

V. Liyanage, A. Ekanayake, H. Premasiri, P. Munasinghe, and S. Thelijjagoda, “Foody - Smart Restaurant Management and Ordering System,” in 2018 IEEE Region 10 Humanitarian Technology Conference (R10-HTC), 2018, pp. 1–6.

S. Du, F. Meng, and B. Gao, “Research on the application system of smart campus in the context of smart city,” Proc. - 2016 8th Int. Conf. Inf. Technol. Med. Educ. ITME 2016, pp. 714–718, 2017.

M. Opazo-Basáez, S. G. Muhammad, D. Arias-Aranda, and V. Molina-Moreno, “A roadmap towards smart services in healthcare [Una hoja de ruta hacia los servicios inteligentes en la asistencia sanitaria],” Dyna, vol. 92, no. 1, pp. 22–27, 2017.

Published
2019-12-27
How to Cite
Azmy, M. R. (2019). A Survey on Product of Smart Service System . Jurnal Sistem Cerdas, 2(3), 173 - 185. https://doi.org/10.37396/jsc.v2i3.50