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This paper is set against a backdrop where India is at an important juncture in the energy landscape – a present riddled with many challenges and an imminent future of multiple opportunities led by technology implementations. The paper begins by providing an overall context to the Indian Power scenario and introduces the country’s ambitious smart grids vision led by security, adaptability, sustainability, reliability and quality. In the next section, we delve deeper into the characteristics of the Indian Smart Energy ecosystem – exploring the market potential and opportunities as well as policies that are currently in place. The third segment is dedicated to standardization and an effort has been made to bring together all relevant standards (including IoT) as well as policies that enable their implementation. This segment also discusses cyber security and associated challenges, as these tenets are critical to the standards debate. The fourth segment explores opportunities and challenges that all these bring in the areas of renewable energy, transmission, distribution, micro-grids and security as well as their possible impact. In the final section, the paper puts forth some actionable recommendations for stakeholders in the energy ecosystem including calling for new policies around rooftop PVs, net metering, communications and IoT, data usage, distribution automation and management of distributed energy resources, schemes for incentivizing stakeholders as well as greater collaboration among ecosystem players. In doing so, it also highlights the benefits that collaborations such as those between India and EU could bring to accelerating both standards creation as well as implementation.
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seminar on SMART GRID is the best seminar of my branch technology based on smart to integration of information technology on traditional power system It may be best to understood Smart Grid as the overlaying of a unified communications and control system on the existing power delivery infrastructure to provide the right information to the right entity (e.g. end-use devices, transmission and distribution, system controls, customers, etc.) at the right time to take the right action. It is a system that optimizes power supply and delivery, minimizes losses, is self-healing, and enables next-generation energy efficiency and demand response applications. To have connections between suppliers, distributors and consumers. In definition, Smart Grid is a form of electricity network utilizing digital technology. Its delivers electricity from suppliers to consumers using two-way digital communications to control appliances at consumers' homes; which in deed will saving the energy, reduce costs and increase reliability. A key feature of the smart grid is automation technology that lets the utility adjust and control each individual device or millions of devices from a central location. A Smart Grid must functions as followings 1. Be able to heal itself Smart Grid is designed with a control system that self-analyzes its performance using intelligent autonomous reinforcement learning controllers that are able to learn new strategies and successfully implementing such strategies to govern the behavior of the grid in the face of an ever changing environment such as equipment failures. 2. Motivate consumers to actively participate in operations of the grid If consumers have freedom to control own usage of energy, they will be motivated to participate and be part of the system. They can monitor their usage and manipulate by the assistance of “smart appliances” and “intelligent equipment” in homes or businesses. Advanced communications capabilities equip customers with tools to exploit real-time electricity pricing, incentive-based load reduction signals, or emergency load reduction signals. 3. Resist attack Most important issues of resist attack is the smart monitoring of power grids, which is the basis of control and management of smart grids to avoid or mitigate the system-wide disruptions like blackouts. 4. Accommodate all energy generation and storage options Smart Grid integrates two power generation source; traditional power generation likes fossil fuel powered power plant with renewable power generations either generates from residential, commercial, and industrial customers that will improves reliability and power quality, reduces electricity costs, and offers more customer choice. 5. High quality power Outages and power quality issues is common for any country especially for major industrial-based countries. Smart Grid provides more stable power provided that will reduce downtime and prevent such high losses because of
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seminar on SMART GRID is the best seminar of my branch technology based on smart to integration of information technology on traditional power system It may be best to understood Smart Grid as the overlaying of a unified communications and control system on the existing power delivery infrastructure to provide the right information to the right entity (e.g. end-use devices, transmission and distribution, system controls, customers, etc.) at the right time to take the right action. It is a system that optimizes power supply and delivery, minimizes losses, is self-healing, and enables next-generation energy efficiency and demand response applications. To have connections between suppliers, distributors and consumers. In definition, Smart Grid is a form of electricity network utilizing digital technology. Its delivers electricity from suppliers to consumers using two-way digital communications to control appliances at consumers' homes; which in deed will saving the energy, reduce costs and increase reliability. A key feature of the smart grid is automation technology that lets the utility adjust and control each individual device or millions of devices from a central location. A Smart Grid must functions as followings 1. Be able to heal itself Smart Grid is designed with a control system that self-analyzes its performance using intelligent autonomous reinforcement learning controllers that are able to learn new strategies and successfully implementing such strategies to govern the behavior of the grid in the face of an ever changing environment such as equipment failures. 2. Motivate consumers to actively participate in operations of the grid If consumers have freedom to control own usage of energy, they will be motivated to participate and be part of the system. They can monitor their usage and manipulate by the assistance of “smart appliances” and “intelligent equipment” in homes or businesses. Advanced communications capabilities equip customers with tools to exploit real-time electricity pricing, incentive-based load reduction signals, or emergency load reduction signals. 3. Resist attack Most important issues of resist attack is the smart monitoring of power grids, which is the basis of control and management of smart grids to avoid or mitigate the system-wide disruptions like blackouts. 4. Accommodate all energy generation and storage options Smart Grid integrates two power generation source; traditional power generation likes fossil fuel powered power plant with renewable power generations either generates from residential, commercial, and industrial customers that will improves reliability and power quality, reduces electricity costs, and offers more customer choice. 5. High quality power Outages and power quality issues is common for any country especially for major industrial-based countries. Smart Grid provides more stable power provided that will reduce downtime and prevent such high losses because of
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Dermot byrne presentation
1.
Transforming the Power
System on the Island of Ireland Dermot Byrne Chief Executive, EirGrid May 2010
2.
EirGrid – An
All-Island Energy Company
3.
Transforming the Power
System Deregulation Competition and Customer Choice Smart Grids Renewables Integration and Grid Development Carbon Neutrality Electrification of Transport and Heating Sectors Time
4.
5.
Ireland’s Renewable Policy
Target
6.
1 Investment Dimension
– the ‘Hardware’
7.
8.
EirGrid: Driving Ireland’s
Smart Grid Forward Graphic Source: NIST Framework and Roadmap for Smart Grid Interoperability Standards
9.
EirGrid: Driving Ireland’s
Smart Grid Forward Graphic Source: NIST Framework and Roadmap for Smart Grid Interoperability Standards
10.
Load and Wind
Cycles
11.
Thank You
Download now