@inproceedings{2cd9477b60a2419986d6245e93d82a7b,
title = "Towards a framework for engineering smart-grid-specific privacy requirements",
abstract = "Privacy has become a critical topic in the engineering of electric systems. This work proposes an approach for smart-grid-specific privacy requirements engineering by extending previous general privacy requirements engineering frameworks. The proposed extension goes one step further by focusing on privacy in the smart grid. An alignment of smart grid privacy requirements, dependability issues and privacy requirements engineering methods is presented. Starting from this alignment a Threat Tree Analysis is performed to obtain a first set of generic, high level privacy requirements. This set is formulated mostly on the data instead of the information level and provides the basis for further project-specific refinement. {\textcopyright} 2013 IEEE.",
keywords = "Dependability issues, Electric systems, Engineering frameworks, Information levels, Privacy requirements, Privacy requirements engineering methods, Smart grid, Alignment, Requirements engineering, Smart power grids, Industrial electronics",
author = "C. Neureiter and G. Eibl and A. Veichtlbauer and D. Engel",
note = "Conference code: 102387 Cited By :15 Export Date: 14 December 2023 CODEN: IEPRE Correspondence Address: Josef Ressel Center for User-Centric Smart Grid Privacy, Security and Control, Urstein Sued 1, A-5412 Urstein/Salzburg, Austria References: Lisovich, M.A., Wicker, S.B., Privacy concerns in upcoming residential and commercial demand-response systems (2008) IEEE Proceedings on Power Systems, 1 (1); Quinn, E.L., Privacy and the new energy infrastructure (2009) Social Science Research Network (SSRN), , Feb; McDaniel, P., McLaughlin, S., Security and privacy challenges in the smart grid (2009) IEEE Security Privacy Magazine, 7 (3), pp. 75-77; Khurana, H., Hadley, M., Lu, N., Frincke, D., Smart-grid security issues (2010) IEEE Security \&Privacy, 8 (1), pp. 81-85; Rohjans, S., Danekas, C., Uslar, M., Requirements for smart grid iCT-architectures (2012) Proc. IEEE Int. Conf. Innovative Smart Grid Technologies (ISGT Europe), pp. 1-8; Wicker, S.B., Schrader, D.E., Privacy-aware design principles for information networks (2010) Proceedings of the IEEE, 99, pp. 330-350; Cavoukian, A., Polonetsky, J., Wolf, C., Smart privacy for the smart grid:Embedding privacy into the design of electricity conservation (2010) Identity in the Information Society, 3, pp. 275-294. , http://dx.doi.org/10.1007/s12394-010-0046-y, 10.1007/s12394-010-0046-y; Beckers, K., Comparing privacy requirements engineering approaches (2012) Seventh International Conference on Availability, Reliability and Security (ARES), 2012, pp. 574-581; Fabian, B., {\"G}urses, S., Heisel, M., Santen, T., Schmidt, H., A comparison of security requirements engineering methods (2010) Requirements Engineering Special Issue on Security Requirements Engineering, 15, pp. 7-40; Deng, M., Wuyts, K., Scandariato, R., Preneel, B., Joosen, W., A privacy threat analysis framework:Supporting the elicitation and fulfillment of privacy requirements (2011) Requirements Engineering, 16, pp. 3-32; (2012) Smart Grid Reference Architecture, , Smart Grid Coordination Group, CEN-CENELEC-ETSI, Tech. Rep; Hart, G., Nonintrusive appliance load monitoring (1992) Proceedings of the IEEE, 80 (12), pp. 1870-1891. , Dec; Zeifman, M., Roth, K., Nonintrusive appliance load monitoring:Review and outlook (2011) IEEE Transactions on Consumer Electronics, 57, pp. 76-84; Efthymiou, C., Kalogridis, G., Smart grid privacy via anonymization of smart metering data (2010) Proceedings of First IEEE International Conference on Smart Grid Communications, pp. 238-243. , Gaithersburg, Maryland, USA, Oct; Erkin, Z., Troncoso-Pastoriza, J., Lagendijk, R., Perez-Gonzalez, F., Privacy-preserving data aggregation in smart metering systems:An overview Signal Processing Magazine, 30 (2), pp. 75-86. , IEEE March; Engel, D., Wavelet-based load profile representation for smart meter privacy (2013) Proc. IEEE PES Innovative Smart Grid Technologies (ISGT'13), pp. 1-6. , Washington, D.C., USA, Feb; Kalloniatis, C., Kavakli, E., Gritzalis, S., Addressing privacy requirements in system design:The priS method (2008) Requirements Engineering, 13, pp. 241-255; (2010) Functional Safety of Electrical/Electronic/Programmable Electronic Safety-related Systems, , International Electrotechnical Commission (IEC) Std., Apr; Instandhaltbarkeit, Sicherheit (RAMS), , Deutsches Institut {\"f}ur Normung (DIN) Std. DIN EN 50 126; Avizienis, A., Laprie, J.-C., Randell, B., Landwehr, C., Basic concepts and taxonomy of dependable and secure computing (2004) IEEE Transactions on Dependable and Secure Computing, 1 (1), pp. 11-33; Pfitzmann, A., Hansen, M., (2011) A Terminology for Talking about Privacy by Data Minimization: Anonymity, Unlinkability, Unobservability, Pseudonymity, and Identity Management-version v0.34, , TU Dresden and ULD Kiel, Tech. Rep; (2009) Criteria for Information Technology Security Evaluation C.Organization for Standardization (Iso); Nissenbaum, H., Privacy as contextual integrity (2004) Washington Law Review, 79, pp. 101-139; 39th Annual Conference of the IEEE Industrial Electronics Society, IECON 2013, IECON 2013 ; Conference date: 10-11-2013 Through 13-11-2013",
year = "2013",
doi = "10.1109/IECON.2013.6699912",
language = "English",
pages = "4803--4808",
booktitle = "IECON 2013 - 39th Annual Conference of the IEEE Industrial Electronics Society",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
address = "United States",
}