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Journal ArticleDOI

Electricity Smart Meters Interfacing the Households

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TLDR
The definition of a local interface for smart meters is proposed by looking at the actual European Union and international regulations, at the technological solutions available on the market, and at those implemented in different countries, by proposing specific architectures for a proper consumer-oriented implementation of a smart meter network.
Abstract
The recent worldwide measures for energy savings call for a larger awareness of the household energy consumption, given the relevant contribution of domestic load to the national energy balance. On the other hand, electricity smart meters together with gas, heat, and water meters can be interconnected in a large network offering a potential value to implement energy savings and other energy-related services, as long as an efficient interface with the final user is implemented. Unfortunately, so far, the interface of such devices is mostly designed and addressed at the utilities supervising the system, giving them relevant advantages, while the communication with the household is often underestimated. This paper addresses this topic by proposing the definition of a local interface for smart meters, by looking at the actual European Union and international regulations, at the technological solutions available on the market, and at those implemented in different countries, and, finally, by proposing specific architectures for a proper consumer-oriented implementation of a smart meter network.

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Citations
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A Survey on the Electrification of Transportation in a Smart Grid Environment

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Smart home energy management systems: Concept, configurations, and scheduling strategies

TL;DR: In this paper, a brief overview on the architecture and functional modules of smart HEMS is presented, and various home appliance scheduling strategies to reduce the residential electricity cost and improve the energy efficiency from power generation utilities are also investigated.
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Networked Microgrids for Enhancing the Power System Resilience

TL;DR: It is concluded that networked microgrids in particular provide a universal solution for improving the resilience against extreme events in Smart Cities.
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Internet of Things-Aided Smart Grid: Technologies, Architectures, Applications, Prototypes, and Future Research Directions

TL;DR: A comprehensive survey on the IoT-aided smart grid systems is presented in this article, which includes the existing architectures, applications, and prototypes of the IoTaided SG systems.
References
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Journal ArticleDOI

Industrial Wireless Sensor Networks: Challenges, Design Principles, and Technical Approaches

TL;DR: The aim is to provide a contemporary look at the current state of the art in IWSNs and discuss the still-open research issues in this field and to make the decision-making process more effective and direct.
Proceedings ArticleDOI

A Comparative Study of Wireless Protocols: Bluetooth, UWB, ZigBee, and Wi-Fi

TL;DR: A study of these popular wireless communication standards, evaluating their main features and behaviors in terms of various metrics, including the transmission time, data coding efficiency, complexity, and power consumption would benefit application engineers in selecting an appropriate protocol.
Journal ArticleDOI

A zigbee-based home automation system

TL;DR: The proposed ZigBee based home automation system and Wi-Fi network are integrated through a common home gateway and a dedicated virtual home is implemented to cater for the system's security and safety needs.
Journal ArticleDOI

Quantifying the Effect of Demand Response on Electricity Markets

TL;DR: In this article, a new centralized complex-bid market-clearing mechanism has been devised to take into consideration the load shifting behavior of consumers who do submit price-sensitive bids, and the effects of the proportion of demand response on the market are illustrated using a test system with ten generating units scheduled over 24 periods.

Quantifying the Effect of Demand Response on Electricity Markets

TL;DR: In this paper, a new centralized complex-bid market-clearing mechanism has been devised to take into consideration the load shifting behavior of consumers who do submit price-sensitive bids, and the effects of the proportion of demand response on the market are illustrated using a test system with ten generating units scheduled over 24 periods.
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