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Raihan Md. Abu, Habib Md. Habibur Rahman, Munjer Md. Abul Variable Voltage Control of Wind Turbine Gen


This book represents different types of renewable energy, the behavior of renewable energy.The world is hunger of energy. The conventional energy is decreasing day by day. The use and necessity of renewable energy is discussed with respect to all over the world. A wind farm consists of several wind turbines.It is essential to connect the wind farm. Wind energy and wind firm are also discussed then it covers essential topics about wind turbine systems such as wind turbine generation system, wind power output, mechanical power extracted from wind.The speed of wind is not constant as well as the generated voltage is not also constant.Finally a wind farm integrated power system is designed and in simulation it is tried to keep the voltage constant by controlling the pitch angle of the wind turbine.

8652 RUR

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Bin Wu Model Predictive Control of Wind Energy Conversion Systems


Model Predictive Control of Wind Energy Conversion Systems addresses the predicative control strategy that has emerged as a promising digital control tool within the field of power electronics, variable-speed motor drives, and energy conversion systems. The authors provide a comprehensive analysis on the model predictive control of power converters employed in a wide variety of variable-speed wind energy conversion systems (WECS). The contents of this book includes an overview of wind energy system configurations, power converters for variable-speed WECS, digital control techniques, MPC, modeling of power converters and wind generators for MPC design. Other topics include the mapping of continuous-time models to discrete-time models by various exact, approximate, and quasi-exact discretization methods, modeling and control of wind turbine grid-side two-level and multilevel voltage source converters. The authors also focus on the MPC of several power converter configurations for full variable-speed permanent magnet synchronous generator based WECS, squirrel-cage induction generator based WECS, and semi-variable-speed doubly fed induction generator based WECS. Furthermore, this book: Analyzes a wide variety of practical WECS, illustrating important concepts with case studies, simulations, and experimental results Provides a step-by-step design procedure for the development of predictive control schemes for various WECS configurations Describes continuous- and discrete-time modeling of wind generators and power converters, weighting factor selection, discretization methods, and extrapolation techniques Presents useful material for other power electronic applications such as variable-speed motor drives, power quality conditioners, electric vehicles, photovoltaic energy systems, distributed generation, and high-voltage direct current transmission. Explores S-Function Builder programming in MATLAB environment to implement various MPC strategies through the companion website Reflecting the latest technologies in the field, Model Predictive Control of Wind Energy Conversion Systems is a valuable reference for academic researchers, practicing engineers, and other professionals. It can also be used as a textbook for graduate-level and advanced undergraduate courses.

10422.9 RUR

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Siegfried Heier Grid Integration of Wind Energy. Onshore and Offshore Conversion Systems


This popular reference describes the integration of wind-generated power into electrical power systems and, with the use of advanced control systems, illustrates how wind farms can be made to operate like conventional power plants. Fully revised, the third edition provides up-to-date coverage on new generator developments for wind turbines, recent technical developments in electrical power conversion systems, control design and essential operating conditions. With expanded coverage of offshore technologies, this edition looks at the characteristics and static and dynamic behaviour of offshore wind farms and their connection to the mainland grid. Brand new material includes: comprehensive treatment of onshore and offshore grid integration updated legislative guidelines for the design, construction and installation of wind power plants the fundamental characteristics and theoretical tools of electrical and mechanical components and their interactions new and future types of generators, converters, power electronics and controller designs improved use of grid capacities and grid support for fixed- and variable-speed controlled wind power plants options for grid control and power reserve provision in wind power plants and wind farms This resource is an excellent guide for researchers and practitioners involved in the planning, installation and grid integration of wind turbines and power plants. It is also highly beneficial to university students studying wind power technology, renewable energy and power systems, and to practitioners in wind engineering, turbine design and manufacture and electrical power engineering.

9604.24 RUR

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Bin Wu Power Conversion and Control of Wind Energy Systems


The book presents the latest power conversion and control technology in modern wind energy systems. It has nine chapters, covering technology overview and market survey, electric generators and modeling, power converters and modulation techniques, wind turbine characteristics and configurations, and control schemes for fixed- and variable-speed wind energy systems. The book also provides in-depth steady-state and dynamic analysis of squirrel cage induction generator, doubly fed induction generator, and synchronous generator based wind energy systems. To illustrate the key concepts and help the reader tackle real-world issues, the book contains more than 30 case studies and 100 solved problems in addition to simulations and experiments. The book serves as a comprehensive reference for academic researchers and practicing engineers. It can also be used as a textbook for graduate students and final year undergraduate students.

9455.2 RUR

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N. Prema Kumar Modelling Design of Wind and Fuel Energy Systems


The development of advanced energy management systems for efficient and environment friendly society require proper design. Modeling and simulations are performed on the design models for their validity in real time applications. The book presents the modeling of the hybrid wind and fuel cell energy systems using MATLAB SIMULINK toolbox. The wind turbine coupled to doubly fed induction generators combined with the Solid Oxide Fuel Cell to meet the load demand. The fluctuations in the output of the Wind Turbine due to wind speed variations are taken care of by the Solid Oxide Fuel Cell. CUK converter is used to increase the voltage from the non-conventional energy sources. The inverter converts DC voltage to the variable AC voltage given to the load. The main advantage of the hybrid system is to provide Continuous power supply to the load.

8789 RUR

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Akshay Kumar DFIG-based Wind Power Conversion System Connected to Grid


Master's Thesis from the year 2014 in the subject Engineering - Power Engineering, grade: 7.8, Ajay Kumar Garg Engineering College, course: M.Tech, language: English, abstract: Wind generation has become the most important alternate energy source and has experienced increased progress in India during the past decade. While it has great potential as an alternative to less environmentally friendly energy sources, there are various technical challenges that cause wind to be considered negatively by many utilities. Wind energy conversion systems suffer from the fact that their real power generation is closely dependent on the local environmental conditions. The Doubly Fed Induction Generator (DFIG) based wind turbine with variable-speed variable-pitch control scheme is the most popular wind power generator in the wind power industry. This machine can be operated either in grid connected or standalone mode. In this thesis, a detailed electromechanical model of a DFIG-based wind turbine connected to power grid as well as separately operated wind turbine system with different sub-systems is developed in the MATLAB/SIMULINK environment and its equivalent generator and turbine control structure is realized. In this regard following configurations have been considered:• DFIG with Battery storage sub-system• DFIG with Buck-Boost converter• DFIG with transformer• DFIG with 3-winding transformerAddition of battery storage and buck-boost converter sub-systems into the system enables no...

5039 RUR

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Mahmoud Mossa Control of a Wind Driven Doubly Fed Induction Generator During Grid Faults


Master's Thesis from the year 2013 in the subject Engineering - Power Engineering, grade: none, , course: Electrical engineering (Renewable energy), language: English, abstract: Wind electrical power systems are recently getting lot of attention, becausethey are cost competitive, environmental clean and safe renewable powersource, as compared with fossil fuel and nuclear power generation. A specialtype of induction generator, called a doubly fed induction generator (DFIG),is used extensively for high-power wind applications. They are used moreand more in wind turbine applications due to ease controllability, highenergy efficiency and improved power quality.This thesis aims to develop a method of a field orientation scheme forcontrol both the active and reactive powers of a DFIG driven by a windturbine.The proposed control system consists of a wind turbine that drives aDFIG connected to the utility grid through AC-DC-AC link. The maincontrol objective is to regulate the dc link voltage for operation at maximumavailable wind power.This is achieved by controlling the and axescomponents of voltages and currents for both rotor side and line sideconverters using PI controllers. The complete dynamic model of theproposed system is described in detail. Computer simulations have beencarried out in order to validate the effectiveness of the proposed systemduring the variation of wind speed. The results prove that , better overallperformances are achieved, quick recover from wind spe...

7002 RUR

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Siegfried Heier Grid Integration of Wind Energy. Onshore and Offshore Conversion Systems


This popular reference describes the integration of wind-generated power into electrical power systems and, with the use of advanced control systems, illustrates how wind farms can be made to operate like conventional power plants. Fully revised, the third edition provides up-to-date coverage on new generator developments for wind turbines, recent technical developments in electrical power conversion systems, control design and essential operating conditions. With expanded coverage of offshore technologies, this edition looks at the characteristics and static and dynamic behaviour of offshore wind farms and their connection to the mainland grid. Brand new material includes: comprehensive treatment of onshore and offshore grid integration updated legislative guidelines for the design, construction and installation of wind power plants the fundamental characteristics and theoretical tools of electrical and mechanical components and their interactions new and future types of generators, converters, power electronics and controller designs improved use of grid capacities and grid support for fixed- and variable-speed controlled wind power plants options for grid control and power reserve provision in wind power plants and wind farms This resource is an excellent guide for researchers and practitioners involved in the planning, installation and grid integration of wind turbines and power plants. It is also highly beneficial to university students studying wind power technology, renewable energy and power systems, and to practitioners in wind engineering, turbine design and manufacture and electrical power engineering.

9772.37 RUR

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Nick Jenkins Wind Energy Handbook


Named as one of Choice's Outstanding Academic Titles of 2012 Every year, Choice subject editors recognise the most significant print and electronic works reviewed in Choice during the previous calendar year. Appearing annually in Choice's January issue, this prestigious list of publications reflects the best in scholarly titles and attracts extraordinary attention from the academic library community. The authoritative reference on wind energy, now fully revised and updated to include offshore wind power A decade on from its first release, the Wind Energy Handbook, Second Edition, reflects the advances in technology underpinning the continued expansion of the global wind power sector. Harnessing their collective industrial and academic expertise, the authors provide a comprehensive introduction to wind turbine design and wind farm planning for onshore and offshore wind-powered electricity generation. The major change since the first edition is the addition of a new chapter on offshore wind turbines and offshore wind farm development. Opening with a survey of the present state of offshore wind farm development, the chapter goes on to consider resource assessment and array losses. Then wave loading on support structures is examined in depth, including wind and wave load combinations and descriptions of applicable wave theories. After sections covering optimum machine size and offshore turbine reliability, the different types of support structure deployed to date are described in turn, with emphasis on monopiles, including fatigue analysis in the frequency domain. Final sections examine the assessment of environmental impacts and the design of the power collection and transmission cable network. New coverage features: turbulence models updated to reflect the latest design standards, including an introduction to the Mann turbulence model extended treatment of horizontal axis wind turbines aerodynamics, now including a survey of wind turbine aerofoils, dynamic stall and computational fluid dynamics developments in turbine design codes techniques for extrapolating extreme loads from simulation results an introduction to the NREL cost model comparison of options for variable speed operation in-depth treatment of individual blade pitch control grid code requirements and the principles governing the connection of large wind farms to transmission networks four pages of full-colour pictures that illustrate blade manufacture, turbine construction and offshore support structure installation Firmly established as an essential reference, Wind Energy Handbook, Second Edition will prove a real asset to engineers, turbine designers and wind energy consultants both in industry and research. Advanced engineering students and new entrants to the wind energy sector will also find it an invaluable resource.

11536.11 RUR

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Weiwei Shan Gain Scheduling Pitch Control for Fatigue Load Reduction for Wind Turbines


This work investigates several methods for the design of a pitch control system, which actively reduces the fatigue loads on the tower of a wind turbine. As major contribution, this work demonstrates that it is possible to design collective pitch controllers that, additionally to basic rotor speed control and active damping of the first fore-aft tower bending mode, allow to reduce the fore-aft tower bending loads due to 3p harmonic excitation.

9077 RUR

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wind speed sensor | eBay

61 Ergebnisse für wind speed sensor Speichern Sie wind speed sensor , um E-Mail-Benachrichtigungen und Aktualisierungen in Ihrem eBay-Feed zu erhalten. Entfolgen Sie wind speed sensor , wenn Sie keine Aktualisierungen mehr in Ihrem Feed erhalten möchten.

Wireless Wind Speed Sensors & Wind Gauges | Wireless Wind

Wireless Wind Speed Sensors and Wind Gauges provide wind speed and direction data directly into the palm of your hand. Perfect for construction sites, amusement parks, and other industries where wind or working at heights outdoors is a factor. Wireless Wind Speed Sensors are easy to install, no fabrication required.

wind speed sensor-wind sensors Anemometer 360 degree 0-5V ...

An anemometer is a device used for measuring wind speed, and is a common weather station instrument. This well made anemometer is designed to sit outside and measure wind speed with ease.

Wind Speed and Wind Direction Sensors

Wind direction and are often used with anemometers, which measure wind speed.Most of our wind sensors are modified slightly from the manufacturers’ stock items so that they may be used with our data loggers in research, air quality, and general purpose meteorological applications.

INDUSTRY - Wind speed sensor: LAMBRECHT meteo GmbH

Our wind warning system comprises the wind warning device, the INDUS­TRY wind speed sensor, which has been tried and tested worldwide and the indicator type 8537. It ensures continuous monitoring of the wind velocity with advance and primary warnings. Two freely configu­rable relays provide a high degree of flexibility; on-delay and drop-out delay can be adjusted separately.

wind speed sensor | eBay

Find great deals on eBay for wind speed sensor. Shop with confidence.

Wind Speed and Wind Direction Sensors - Wind vanes ...

About Wind Speed and Wind Direction Sensors Wind vanes measure wind direction and are often used with anemometers, which measure wind speed. Campbell Scientific offers a variety of anemometer designs: cup, propeller, ultrasonic, sonic, and lidar. Most of our wind sensors are modified slightly from the manufacturers’ stock items so that they may be used with our data loggers in research, air quality, and general purpose meteorological applications.

WindSonic Ultrasonic Wind Sensor | Gill Instruments

WindSonic is a 2-axis ultrasonic wind sensor, providing wind speed and direction data via one serial or two analogue outputs. To confirm correct operation, wind sensor outputs are transmitted together with an instrumentation status code.

Anemometer Wind Speed Sensor w/Analog Voltage Output ID ...

The voltage will range from 0.4V (0 m/s wind) up to 2.0V (for 32.4m/s wind speed). That's it! The sensor is rugged, and easy to mount. The cable can easily disconnect with a few twists and has a weatherproof connector.

PROFESSIONAL-IX 3.0 - Wind speed sensor: LAMBRECHT meteo GmbH

Our wind warning system comprises the wind warning device, the INDUS­TRY wind speed sensor, which has been tried and tested worldwide and the indicator type 8537. It ensures continuous monitoring of the wind velocity with advance and primary warnings. Two freely configu­rable relays provide a high degree of flexibility; on-delay and drop-out delay can be adjusted separately.

Windspeed Limited (Vector Instruments) - Celebrating 40 ...

Wind Speed Sensors A range of Optoelectronic and Switching Anemometers is available with various different output signals and power requirements making them suitable for a wide range of applications, including Meteorology, Wind Assessment and Offshore, where accuracy and sensitivity are important.

Ultrasonic wind sensors and anemometers measuring wind ...

Ice-resistant - Sensor remains ice-free when freezing rain applied in a chamber with temperature -14°C, wind speed 15m/s. De-icing - Sensor exposed to freezing rain in air flow of 15m/s and -14°C.

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