一种支持多时间粒度的隐私保护智能计量系统

Hsiao-Ying Lin, Shiuan-Tzuo Shen, B. Lin
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引用次数: 12

摘要

先进的智能电表在不到一秒的时间单位内产生电表读数。细粒度的电表读数支持各种智能电网应用,如负载监控、自动计费和发电规划。然而,这些仪表读数暴露了人们日常活动的细节,从而威胁到了个人隐私。智能电表的时间粒度通常比智能电网应用程序所需的时间粒度要细得多。因此,电表读数的存储和访问控制机制对于平衡隐私需求和应用程序功能至关重要。以前的研究通过考虑本地可信存储设备和使用加密原语来解决这个问题。我们考虑一个存储外包场景,其中外部存储环境是半可信的。利用智能电表中的可信平台模块和模块内的伪随机数生成器,构建了一个保护隐私的计量系统。我们的系统保证了仪表读数的安全存储,并支持多个时间粒度。在我们的系统中,用户授予服务提供商对时间粒度s的电表读数的访问权限。被授予的服务提供商只允许在被授予的时间粒度的一个时间单位内获得功耗。我们的系统为保护隐私的智能计量系统提供了一个简单而实用的解决方案。此外,我们提供了一个隐私模型来捕捉隐私需求,并表明我们的系统是对诚实但好奇的服务提供者的隐私保护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Privacy Preserving Smart Metering System Supporting Multiple Time Granularities
Advanced smart meters generate meter readings in a time unit less than a second. Fine-grained meter readings enable various smart grid applications, such as load monitoring, automatic billing, and power generation planning. However, those meter readings threaten individuals' privacy by revealing details of one's daily activities. The time granularity of smart meters is often much finer than the one a smart grid application demands. Thus, the storage and access control mechanisms of meter readings are critical to balancing privacy requirements and application functionalities. Previous studies address the issue by considering a locally trusted storage device and using cryptographic primitives. We consider a storage outsourcing scenario, where the external storage environment is semi-trusted. We construct a privacy preserving metering system by using a trusted platform module in a smart meter and pseudorandom number generators inside the module. Our system guarantees the secure storage of meter readings and supports multiple time granularities. In our system, a user grants a service provider an access right over meter readings at a time granularity S. The granted service provider is only allowed to get the power consumption at a time unit of the granted time granularity. Our system provides a simple yet very practical solution to the privacy preserving smart metering system. Moreover, we provide a privacy model to capture the privacy requirement and show that our system is privacy preserving against honest-but-curious service providers.
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