A survey on smart metering and smart grid communication pdf

Posted on Monday, May 3, 2021 1:56:49 PM Posted by Zacharie M. - 03.05.2021 and pdf, and pdf 3 Comments

a survey on smart metering and smart grid communication pdf

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He received his MSc and PhD in Electrical and Electronics Engineering from Gazi University, Turkey, where his research focused on implementing an enhanced modulation scheme for multilevel inverters. Kabalci also serves as an Associate Editor for several international indexed journals and as a reviewer for more than 25 international journals on power electronics and renewable energy sources. His current research interests include power electronic applications and drives for renewable energy sources, microgrids, distributed generation, power line communication, and smart grid applications. He has been a member of the IEEE since He has published more than 80 research papers in journals and conferences proceedings, and has authored 7 book chapters.

Big Data management in smart grid: concepts, requirements and implementation

Metrics details. A smart grid is an intelligent electricity grid that optimizes the generation, distribution and consumption of electricity through the introduction of Information and Communication Technologies on the electricity grid. In essence, smart grids bring profound changes in the information systems that drive them: new information flows coming from the electricity grid, new players such as decentralized producers of renewable energies, new uses such as electric vehicles and connected houses and new communicating equipments such as smart meters, sensors and remote control points. All this will cause a deluge of data that the energy companies will have to face. Big Data technologies offers suitable solutions for utilities, but the decision about which Big Data technology to use is critical. In this paper, we provide an overview of data management for smart grids, summarise the added value of Big Data technologies for this kind of data, and discuss the technical requirements, the tools and the main steps to implement Big Data solutions in the smart grid context.

A smart meter is an electronic device that records information such as consumption of electric energy , voltage levels, current, and power factor. Smart meters communicate the information to the consumer for greater clarity of consumption behavior, and electricity suppliers for system monitoring and customer billing. Smart meters typically record energy near real-time, and report regularly, short intervals throughout the day. Such an advanced metering infrastructure AMI differs from automatic meter reading AMR in that it enables two-way communication between the meter and the supplier. Communications from the meter to the network may be wireless, or via fixed wired connections such as power line carrier PLC. Wireless communication options in common use include cellular communications, Wi-Fi readily available , wireless ad hoc networks over Wi-Fi, wireless mesh networks , low power long-range wireless LoRa , ZigBee low power, low data rate wireless , and Wi-SUN Smart Utility Networks.

Smart Grids and Their Communication Systems

We present some of the ongoing standardisation work in M2M communications followed by the application of machine-to-machine M2M communications to smart grid. We analyse and discuss the enabling technologies in M2M and present an overview of the communications challenges and research opportunities with a focus on wireless sensor networks and their applications in a smart grid environment. Smart grid SG networks will be characterised by the tight integration of a flexible and secure communications network with novel energy management techniques requiring a very large number of sensor and actuator nodes. The communications network will not only facilitate advanced control and monitoring, but also support extension of participation of generation, transmission, marketing, and service provision to new interested parties. In order to realise the intelligent electricity network, machine-to-machine M2M communication is considered as a building block for SG as a means to deploy a wide-scale monitoring and control infrastructure, thus bringing big opportunities for the information and communication technology ICT industry. For example, smart metering in M2M can facilitate flexible demand management where a smart meter SM is a two-way communicating device that measures energy electricity, gas, water, or heat consumption and communicates that information via some communications means back to the local utility. With near realtime information available for example based on the flow of energy in the grid, different levels of tariff can be calculated and made available for the consumer, the consumer can make a smarter and more responsible choice.

He received his MSc and PhD in Electrical and Electronics Engineering from Gazi University, Turkey, where his research focused on implementing an enhanced modulation scheme for multilevel inverters. Kabalci also serves as an Associate Editor for several international indexed journals and as a reviewer for more than 25 international journals on power electronics and renewable energy sources. His current research interests include power electronic applications and drives for renewable energy sources, microgrids, distributed generation, power line communication, and smart grid applications. He has been a member of the IEEE since He has published more than 80 research papers in journals and conferences proceedings, and has authored 7 book chapters.

This paper presents an overview of smart grid SG technology features such as two-way communication, advanced metering infrastructure AMI system, integration of renewable energy, advanced storage techniques, real time operation and control, data management and processing, physical and cyber security, and self-healing, etc. The SG technology allows twoway communications for better reliability, control, efficiency and economics of the power system. With these new SG technologies, consumers have many energy choices, such as use of renewable energy, usage management, flexible rates, electric vehicles EVs , etc. The requirement of these technologies is the real time operation, and the SG accommodates this real time operation and control. SG technology allows distributed generation through demand response and energy efficiency technologies to shed the load demand. Utility companies, governments, independent system operators ISOs and energy regulatory commissions need to agree on the scope and time frame of these changes.


The micro-generators can be either conventional or alternative sources that operate in the microgrid structure and assist the utility grid. The smart communication.


Smart Grids and Their Communication Systems

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 Сьюзан Флетчер, выйдете за меня замуж. В комнате зашушукались. С одного из столов на пол упали подставка для бумаг и стакан с карандашами, но никто даже не пошевельнулся, чтобы их поднять. Лишь едва слышно шуршали лопасти вентиляторов охлаждения мониторов да доносилось ровное дыхание Дэвида в микрофон, почти прижатый к его рту. - Д-дэвид… - Сьюзан не знала, что за спиной у нее собралось тридцать семь человек.

Smart meter

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