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Competitive single-number Life Cycle Assessment is performed between existing and near-term electrical power plants at the infrastructure level. The focus is on an alternative to current electrical power production in the US in the form of Earth-orbiting Solar Power Satellites Two. This modernized SPS2 theoretical architecture is compared to Combined Cycle Natural Gas and terrestrial solar photovoltaic...
This roadmaps parent document, IEEE Vision for Smart Grid Controls: 2030 and Beyond, discusses many topics that outline the evolution of the Smart Grid and the opportunities and challenges that it presents for control, ranging from generators to consumers, from planning to real-time operation, from current practice to scenarios in 2050 in the grid and all of its subsystems. Chapter 5 of the parent...
The Smart Grid is a system of distributed systems whose domains span the more traditionaldomains of bulk generation, transmission, distribution, consumers, markets, and powerelectronics, with the growing penetration of relatively newer domains such as renewables, electricvehicles, and demand-response-compatible loads. Smart Grid control enables prescriptions forinterconnections and interactions among...
This document describes the IEEE PESs vision of the power system infrastructure into the year 2050. This document sets the stage and includes future scenarios, electricity generation (Make), electricity transmission and distribution (Move), and electricity usage (Use). It also covers the related Operations and Control issues. The document uses scenarios from the International Energy Agency (IEA),...
The scope of this document is focused on computing technologies and the role they will play in the future electric grid. The computing technologies identified by the Computer Society Smart Grid Vision Project (CS-SGVP) team span many computing disciplines and do not necessarily represent all technologies that will shape the Smart Grid. Various projections of how Smart Grid concepts will influence...
The IEEE Grid Vision 2050 Reference Model summarizes the main concepts defined in the IEEE Grid Vision 2050; such as, reference models for energy usage, energy delivery, and energy operations and control. For Corporate or Institutional Access, request a custom quote for your organization at www.ieee.org/smartgridresearch
The IEEE Vision for Smart Grid Communications: 2030 and Beyond provides a vision of the communications-related aspects of the Smart Grid in the year 2030, and lays out the technology roadmap that will lead us to the vision.This document starts with some basic knowledge of the power grid and follows up with fundamental building blocks for the communication infrastructure that will accompany the Smart...
This document highlights the role of control systems in the evolution of the Smart Grid. It includes an overview of research investigations that are needed for renewable integration, reliability, self-healing, energy efficiency, and resilience to physical and cyber attacks. These investigations are encapsulated in several loci of control including: new methodologies for transmission, distribution,...
The goal of this roadmap is to stimulate discussion and challenge ideas around the deployment of power and energy technologies. The IEEE PES (Power & Energy Society) Horizon 2050 team gives a general indication of when technologies could be expected for deployment, and the team takes a step forward and tries to group research and standard development needs for the required power and energy technologies...
Firstly three factors that power system harmonics produced are introduced. Secondly, the impact and harm on the power system are analyzed. Then the commonly used solution measure are proposed. Finally some applicable thoughts on transformation harmonics source technological design and harmonics complement are raised to prevent harmonic generation on power system.
This paper focuses on wind energy conversion system (WECS) analysis and control for power generation along with problems related to the mitigation of harmonic pollution in the grid using a variable-speed structure control of the doubly fed induction generator (DFIG). A control approach based on the so-called sliding mode control (SMC) that is both efficient and suitable is used for power generation...
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