智能电表密度对智能电网集热器数量的影响

V. Kouhdaragh, D. Tarchi, A. Vanelli-Coralli, G. Corazza
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引用次数: 8

摘要

由于基础设施陈旧,传统电网目前效率不高,需要对其功能进行更有效的管理。这一目标是智能电网(SG)概念的基础,旨在将智能引入能源电网。在一些SG设备中,智能电表(SMs)在电网的需求侧工作,其数量在过去几年中正在大量增加。SM是一种SG电子设备,它记录在一定时间间隔内的电能消耗,并通过收集器将这些信息传递给公用事业公司和SG控制站,以便进行监测、要求响应和计费服务。无线通信系统在SG功能中起着重要的作用。然而,由于用户数量的不断增加,频谱的稀缺成为一个重要的问题。SMs的数量是面积大小和SM密度的函数。在支持一定数量短信的单个收集器中,间隔到达率遵循泊松分布。此外,单个收集器从SMs接收的数据量会随着SMs数量的增加而呈指数级增长。因此,引入一种算法,通过定义一定数量的SMs的最小收集器数量来避免指数数据增长,可能是管理SG通信基础设施的合适解决方案。确定单个收集器支持的短信阈值数量及其与短信密度的关系是实现这一目标的首要步骤。本文重点研究了一种算法的定义,该算法的目标是获得相对于SMs数量的最小集热器数量作为SM密度的函数,并最大化集热器的频谱效率。
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Smart meters density effects on the number of collectors in a Smart Grid
The conventional power grids are not efficient today due to their aged infrastructure, requiring a more effective management of their functions. This goal is at the base of the Smart Grid (SG) concept that aim at introducing intelligence in the energy grid. Among several SG devices, smart meters (SMs) work in the demand side of the power grids and their number is increasing massively in the last years. A SM is a SG electronic device which records electric energy consumption in certain time intervals for communicating such information to the utility and SG Control Station through the collectors for monitoring, demanding response and billing services. The wireless communication systems have an important role in the SG functions. However, the spectrum scarcity due to growing number of users is becoming an important problem. The number of SMs is a function of area size and SM density. The inter arrival rate in a single collector which supports a certain number of SMs, follows Poisson distribution. Moreover, the amount of data that a single collector receives from SMs, increase exponentially by increasing the number of SMs. Thus, introducing an algorithm to avoid the exponential data increasing by defining the minimum number of collectors for a certain number of SMs can be a suitable solution to manage SG communication infrastructure. The definition of the threshold number of SMs and its relation with SMs density which should be supported by a single collector is a primary step to reach the goal. This paper focuses on definition of an algorithm aiming to obtain the minimum number of collectors respect to the number of SMs as a function of SM density and to maximize the spectrum efficiency of the collectors.
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