Privacy-preserving smart metering with verifiability for both billing and energy management

Kazuma Ohara, Yusuke Sakai, Fumiaki Yoshida, Mitsugu Iwamoto, K. Ohta
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引用次数: 22

Abstract

In smart grid systems, security and privacy prevention is great concerns. The suppliers of the power in smart grid systems demand to know the consumption of each customer for correctly calculating billing price and the total amount of consumption in a certain region for managing energy supply adopted real-time needs. On the other hand, the customer of the power desires to hide his/her own consumption profile, since it contains privacy information of the customer. However, hiding the consumption allows customers to reduce billing price. Previous privacy-preserving smart metering schemes provide only one of billing or energy management functionality, or even if both of them are achieved, these schemes cannot verify the integrity of the consumption issued by the smart meter. We propose a novel smart metering scheme that provides both of billing and energy management functionality, as well as verifiability of the integrity of total amount of the consumption or billing price.
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隐私保护智能计量与可验证的账单和能源管理
在智能电网系统中,安全与隐私防范是人们非常关注的问题。智能电网系统中的电力供应商需要了解每个用户的用电量,以便正确计算计费价格;需要了解某一区域的总用电量,以便实时管理能源供应。另一方面,权力的客户希望隐藏自己的消费配置文件,因为它包含了客户的隐私信息。但是,隐藏消费可以让客户降低计费价格。以前的保护隐私的智能电表方案只提供一种计费或能源管理功能,或者即使实现了这两种功能,这些方案也无法验证智能电表发出的消费的完整性。我们提出了一种新颖的智能计量方案,该方案提供了计费和能源管理功能,以及消费总量或计费价格完整性的可验证性。
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Provably secure LWE encryption with smallish uniform noise and secret Attribute-based signatures without pairings via the fiat-shamir paradigm Privacy-preserving smart metering with verifiability for both billing and energy management Introduction of structure-preserving signatures Two applications of multilinear maps: group key exchange and witness encryption
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