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Smart Meter Privacy With Renewable Energy and an Energy Storage Device

机译:具有可再生能源和储能设备的智能电表隐私

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A smart meter (SM) measures a consumer's electricity consumption and reports it automatically to a utility provider (UP) in almost real time. Despite many advantages of SMs, their use also leads to serious concerns about consumer privacy. In this paper, SM privacy is studied by considering the presence of a renewable energy source (RES) and a rechargeable battery (RB), which can be used to partially hide the consumer's energy consumption behavior. Privacy is measured by the information leakage rate, which denotes the average mutual information between the user's real energy consumption and the energy requested from the grid, which the SM reads and reports to the UP. The impact of the knowledge of the amount of energy generated by the RES at the UP is also considered. The minimum information leakage rate is characterized as a computable information theoretic single-letter expression in the two extreme cases, that is, when the battery capacity is infinite or zero. Numerical results are presented for the finite battery capacity case to illustrate the potential privacy gains from the existence of an RB. It is shown that, while the information leakage rate decreases with increasing availability of an RES, larger storage capacity is needed to fully exploit the available energy to improve the privacy.
机译:智能电表(SM)可以测量消费者的用电量,并将其几乎实时地自动报告给公用事业提供商(UP)。尽管SM具有许多优点,但它们的使用也导致了对消费者隐私的严重关注。在本文中,通过考虑是否存在可再生能源(RES)和可充电电池(RB)来研究SM隐私,这些可用于部分隐藏消费者的能源消费行为。保密性是通过信息泄漏率来衡量的,信息泄漏率表示用户的实际能耗与电网请求的能量之间的平均相互信息,SM会读取这些信息并报告给UP。还考虑了UP上RES产生的能量知识的影响。在两种极端情况下,即当电池容量为无穷或为零时,最小信息泄漏率的特征是可计算的信息理论单字母表达式。给出了有限电池容量情况下的数值结果,以说明存在RB可能带来的隐私增加。结果表明,虽然信息泄漏率随着RES可用性的提高而降低,但需要更大的存储容量才能充分利用可用能量来改善隐私。

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