
Facilitating a seamless transition towards reliable, affordable and sustainable energy for all
Global leader in Advanced Metering Infrastructure (AMI) implementation
Esyasoft has been appraised at Maturity level 5 of CMMI Institute''s Capability Maturity Model Integration
Esyasoft MDM has been recognized by Gartner Market Guide for Meter Data Management for the past 4 consecutive years
Esyasoft is a pioneer in the Energy Transition, offering an extensive range of products and solutions such as IoT, AI, and analytics that spans across Energy Utility sector .
Addressing climate change challenges by decarbonization. Utilizing the power of emerging technologies like blockchain and artificial intelligence (AI)
Dedicated to driving innovation in the energy industry through our cutting-edge analytics and artificial intelligence (AI) solutions. Empowering energy companies with data-driven insights that enhance efficiency, reliability, and sustainability.
Diverse IoT product lineup encompasses a variety of devices, from smart meters to sophisticated sensors and controllers, designed for modernizing electricity, water, and gas utility grids.
A comprehensive Cloud-Edge Platform solutions and services designed to enable the end-to-end digital transformation of energy distribution grids
Dedicated efforts in implementing EV infrastructure, enabling a seamless transition to electric mobility.
On the 14th of November, the Green Energy Park organized a side event titled "AI at the Service of Smart Grids: Driving Climate Resilience, Renewable Integration & Energy Efficiency" during COP 29 in Baku, Azerbaijan.
The panel discussed topics in the energy sector, including the role of hydrogen in the energy transition, decentralized energy systems for grid stability, and advanced monitoring technologies. Challenges around integrating electric mobility and the water-energy nexus were also explored. The session concluded with insights into how Artificial Intelligence can optimize these areas to develop more resilient and sustainable smart grids.
Project: BAKU SMART CITY
A major challenge was the traffic flow in the city. The Baku executive authority decided to implement a new traffic management system. Glosec accepted the challenge, conducted a site survey, and designed the traffic management system for the entire metropolitan area. Glosec also installed new traffic lights at 150 junctions, linking them all to a central system, with CCTV monitoring the junctions for both traffic flow and security purposes
Keywords: Smart grid; Power quality; Energy Management System; Renewableenergy.
Electricity is the main driver of the world economy and it is a clear indication ofcommunity prosperity. The power system reliability, security, quality, and adequacyare the main challenge in all modern studies in this issue [1]. Due to the intermittentnature of the renewable energy sources, the increase in their penetration ratio maycause power quality problems in the power system [2]. The Smart Grid offers an
April 28-30, 2021 / Baku, AZERBAIJAN
remotely for hybrid generation and management of the grid which enhance itsreliability. Conventional grids have issues regarding interaction of renewableresources, micro grid and demand response but these points are very well addressedby Smart Grid. Smart Grids can have better reliability with the advancement incommunication system.
2 SecurityWith the increase of automation, remote monitoring and controlling of the gridmake the grid more unsafe by cyber assault [12-13]. So, security is considered one ofthe biggest barriers for implementation of Smart Grid technology.
in DR infrastructure are regarded as producer-based barriers [18,20]. In somecountries, it is difficult to establish a unified standard policy system due to theimbalance regional development of DSM [21]. In addition, a rebound of energy useafter high price signal can lead to bigger peaks in DSM [22].
April 28-30, 2021 / Baku, AZERBAIJANThe smart grid is expected to revolutionize existing electrical grid by allowing two-way communications to improve efficiency, reliability, economics, and sustainabilityof the generation, transmission, and distribution of electrical power. However, issuesassociated with communication and management must be addressed before fullbenefits of the smart grid can be achieved. Furthermore, how to maximize the use ofnetwork resources and available power, how to ensure reliability and security, andhow to provide self-healing capability need to be considered in the design of smartgrids.
battery wearing, low penetration of the Extra Voltages, new battery technologies. costs, consumer engagement. distributed generation in distribution system and distribution system automation. physical security, cyber security, vulnerabilities in metering data.
Fig. 3. Overview of Smart Grid design. 4 Smart devices interface componentElectronic devices usually connected to other devices or networks via differentwireless protocols and, which can operate interactively and autonomously are termedas smart devices. Smart devices for monitoring and control forms a part of thegeneration components real time information processes.
4 Storage componentDue to the inconsistency of RES and mismatch between peak consumption and peakavailability, it is significant to find methods to store the energy for future use. Storagecomponent improves reliability and resiliency for the utility grid and electricityconsumers. Energy storage technologies include flow batteries, ultra-capacitors,pumped-hydro, super-conducting magnetic energy storage and compressed air.
4 Monitoring and control technology componentMonitoring and control technology component consist of devices for self-monitoring, self- healing, predictability and adaptability of generation, smartintelligent network and devices enough to handle reliability issues, instability andcongestion.
Regarding the traditional grid became limited and needed more features. So due totechnology grew, the devices and systems are able to support the formation of a moreintelligent grid. The Smart Grid concept has evolved from a vision into a goal that isslowly being realized. As technology grew, devices and systems are able to supportthe formation of a more intelligent grid. Concrete energy policies facilitate Smart Gridinitiatives across the nations. Smart Grid practices in different regions barely indicatecompetition but rather an unbordered community of similar aspirations and sharedlessons. Evolution of Smart Grid concept has potential to meet all the future needs of
utilization of energy in best possible manner by reducing carbon emission andintegrate with more renewable energy mix. It can bring a considerable change in theconventional grid and consumer behavior towards utilization of energy by improvingreliability, efficiency and quality of power delivery. Governmental policies are neededto facilitate smart grid implementation.
Author's biography
Dr. Amer Nasr A. Elghaffar: received his B., M. and PhDdegree in electrical engineering from Minia University, Egyptfollowed with Power and Machine in 2009, 2016, and 2021respectively. Currently, he is a project manager in AlfanarEngineering Service (AES), Alfanar Company, Saudi Arabia.Parallel, also he is a researcher in Electrical Engineering Department,Minia University, Minia, Egypt. His current research interests include renewable energy,power system protection and control, Microgrid, power quality and high voltage. In 2013,he joined Alfanar company, Saudi Arabia, as a testing and commissioning engineer. Hehas the enough experience about the electrical high voltage substations testing and
About Smart grid baku
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