首页> 外文会议>2017 IEEE/ACM 25th International Symposium on Quality of Service >When privacy meets economics: Enabling differentially-private battery-supported meter reporting in smart grid
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When privacy meets economics: Enabling differentially-private battery-supported meter reporting in smart grid

机译:当隐私符合经济要求时:在智能电网中启用电池供电的差异私有电表报告

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摘要

Millions of the smart meters, as essential components, are being deployed ubiquitously in the next generation power system. However, the public privacy concerns over the users' power consumption leakage raise, since the smart meters' unintermittent readings contain customers' behavior patterns. To alleviate this problem, the state-of-the-art techniques are common to use a rechargeable battery to hide the actual power consumption. Unfortunately, none of the existing works completely provide a rigorous privacy protection with reasonable cost under real-world battery settings, i.e., achieving the well-known differential privacy guarantee economically using batteries with limited charge/discharge rate and capacity. To attain this goal, this paper proposes a differentially private meter reading report mechanism. The main idea is to first narrow down the domain of the noise distribution parameter, in order to decrease the possibility of violating the battery limits. It also combines a multi-armed bandit algorithm to further reduce the cost as much as possible. In addition, a novel switch mechanism is proposed to prevent the meter from reporting its reading when the battery limitations might be violated. The theoretical analysis provides a formal proof of the privacy guarantee of the proposed scheme. Besides, experimental results show that the privacy protection of the proposed scheme is at least nine times stronger than that of the existing solutions with acceptable extra cost.
机译:数以百万计的智能电表作为必不可少的组件,已广泛部署在下一代电力系统中。但是,由于智能电表的不间断读数包含用户的行为模式,因此,公共隐私担心用户的功耗泄漏会增加。为了缓解这个问题,最常见的技术是使用可充电电池来隐藏实际功耗。不幸的是,在现实的电池设置下,没有一项现有的工作能够以合理的成本完全提供严格的隐私保护,即,使用有限的充电/放电速率和容量的电池来经济地实现众所周知的差异隐私保证。为了实现这一目标,本文提出了一种差分私有抄表报告机制。主要思想是首先缩小噪声分布参数的范围,以减少违反电池限制的可能性。它还结合了多臂强盗算法,以进一步降低成本。另外,提出了一种新颖的开关机制,以防止在可能违反电池限制时仪表向其报告读数。理论分析为所提出方案的隐私保证提供了形式证明。此外,实验结果表明,所提出的方案的隐私保护至少比现有解决方案的隐私保护强9倍,并且具有可接受的额外成本。

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