IEEE Organizations related to Dc Power Transmission

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Conferences related to Dc Power Transmission

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2020 IEEE International Conference on Industrial Technology (ICIT)

ICIT focuses on industrial and manufacturing applications of electronics, controls, communications, instrumentation, and computational intelligence.


2020 IEEE Power & Energy Society General Meeting (PESGM)

The Annual IEEE PES General Meeting will bring together over 2900 attendees for technical sessions, administrative sessions, super sessions, poster sessions, student programs, awards ceremonies, committee meetings, tutorials and more


2019 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia)

ISGT Asia is an annual global flagship meeting series, in the Asia-Pacific Region that attracts industry practitioners, policy makers and researchers to share and exchange the experiences, ideas and technologies on Smart Grid.The scopes of the conference embrace research and development on smart grid, power system generation, transmission, distribution, planning, protection, optimization, economic and marketing, advanced measurement and control, renewable energy, energy storage, smart substation, power electronic,, big data, energy block chain, installation and operation of equipment. The objectives of the conference are setting a global platform for research, education, innovation on both academic and industry, meanwhile expanding global reach via collaboration and marketing.

  • 2018 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia)

    The IEEE PES ISGT Asia 2018 conference will be a melting pot of participants from academia, industry, research and development organizations, electric power utilities, power and energy sector service providers to discuss, share and exchange ideas related to state-of-the-art innovations in smart grid technologies for the future grid. The theme of this year’s conference is “Smart Grid Technologies for Smart Nations” and includes industrial panel sessions, keynote speeches, tutorials, papers and poster presentation.

  • 2017 IEEE Innovative Smart Grid Technologies - Asia (ISGT-Asia)

    Sustainable Power and energy systems, Smart Grid and Smart Cities,

  • 2016 IEEE Innovative Smart Grid Technologies - Asia (ISGT-Asia)

    The conference will focus on power and energy systems and in particular application of innovative technologies to control and operate power grids.

  • 2015 IEEE Innovative Smart Grid Technologies - Asia (ISGT ASIA)

    ISGT Asia 2015 Bangkok will be a venue for stakeholders from the academia, electric utilities and the power industry to share and exchange experiences and new ideas which will contribute to the development of Smart Grid implementation and related technologies.

  • 2014 IEEE Innovative Smart Grid Technologies - Asia (ISGT ASIA)

    Renewable power generation and its efficient utilization 2) Smart grid information technology 3) Smart power bulk transmission system and EHV/UHV 4) Smart distribution system 5) Smart grid planning, assessment and management 6) Smart grid operation, control and protection 7) Electricity market under smart grid 8) Power quality and electromagnetic compatibility 9) Power electronics and its applications 10) Equipment and its technologies in power system

  • 2013 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia)

    The Conference on Innovative Smart Grid Technologies (ISGT ASIA 2013), sponsored by the IEEE Power & Energy Society (PES), will be held at Bangalore, India. The conference will be a forum for the participants to discuss state-of-the-art innovations in smart grid technologies. The Conference will feature plenary sessions, panels, technical papers, and tutorials by international experts on smart grid applications.

  • 2012 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia)

    1) Renewable power generation and its efficient utilization 2) Smart grid information technology 3) Smart power bulk transmission system and EHV/UHV 4) Smart distribution system 5) Smart grid planning, assessment and management 6) Smart grid operation, control and protection 7) Electricity market under smart grid 8) Power quality and electromagnetic compatibility 9) Power electronics and its applications 10) Equipment and its technologies in power system


2019 IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC)

The aim of the conference is to provide a premier platform for electrical engineers and researchers to present their works and to share experiences and ideas in power and energy engineering with experts and scholars from around the world. Started in Wuhan in 2009, APPEEC is now an annual power engineering conference organized in Asia-Pacific Region.


2018 21st International Conference on Electrical Machines and Systems (ICEMS)

01 Permanent Magnet Motors and Generators, 02 DC and AC Machines, 03 Transformers and Power Apparatus, 04 Linear and Special Machines, 05 Magnetics and Field Analysis, 06 Manufacturing and Testing, 07 Other Areas in Electric Machines, 08 Motor Control and Motor Drives, 09 Motion Control and Servo Systems, 10 Sensorless Control, 11 Automotive Power Electronics and EV Chargers, 12 DC/DC, AC/DC, DC/AC, AC/AC Converters, 13 Other Areas in Power Electronics and Motor Drives, 14 Renewable Energy Systems, 15 Batteries Modeling and Management Systems, Energy Storage Systems, and Power Conversion Systems, 16 Smart Grids, FACTS, and Micro Grids, 17 Electric Propulsion Systems (EV, Train, Electric Ship), 18 Electric and Hybrid Vehicles, 19 Other Areas in Energy Systems and Transportation


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Periodicals related to Dc Power Transmission

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Most published Xplore authors for Dc Power Transmission

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Xplore Articles related to Dc Power Transmission

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AC and DC Power Transmission (Conf. Publ. No.345)

International Conference on AC and DC Power Transmission, 1991

None


Comparison and selection of overlay extra high voltage in North West China power network

1993 2nd International Conference on Advances in Power System Control, Operation and Management, APSCOM-93., 1993

The choice of proper overlay extra high voltage is an urgent and difficult problem faced by planning engineers in the Northwest Electric Power Administration (NWEPA). In this paper, a brief presentation of the North West China Power Network (NWCPN) is offered. Next, a comparison both in technical and economic terms is described. In the author's opinion: 500 kV AC is ...


IEE Colloquium on 'Structural Use of Composites in High Voltage Switchgear/Transmission Networks' (Digest No.223)

IEE Colloquium on Structural Use of Composites in High Voltage Switchgear/Transmission Networks, 1992

None


Resonant inverters for HVDC and FACTS

1993 2nd International Conference on Advances in Power System Control, Operation and Management, APSCOM-93., 1993

Series capacitor compensation can significantly increase the power transfer capabilities of transmission lines in a power system. High levels of series compensation have been avoided because of the resonances that can occur including subsynchronous shaft oscillations. With a phase controlled inductor in parallel, most resonances can be suppressed and the power flow modulated to damp power swing oscillations. This paper ...


Principle and application of power system dynamic simulation

1993 2nd International Conference on Advances in Power System Control, Operation and Management, APSCOM-93., 1993

A power system dynamic simulator is a physical simulator for normal operation and emergency conditions and has good simulated characteristics. In the last twenty years, simulators have given significant research results in the field of power system stability, shock load, new types of microcomputer-based protection relay and microcomputer-based excitation controllers at the Huazhong University of Science and Technology (HUST). The ...


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Educational Resources on Dc Power Transmission

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IEEE-USA E-Books

  • AC and DC Power Transmission (Conf. Publ. No.345)

    None

  • Comparison and selection of overlay extra high voltage in North West China power network

    The choice of proper overlay extra high voltage is an urgent and difficult problem faced by planning engineers in the Northwest Electric Power Administration (NWEPA). In this paper, a brief presentation of the North West China Power Network (NWCPN) is offered. Next, a comparison both in technical and economic terms is described. In the author's opinion: 500 kV AC is not a good solution; 750 kV is an ideal alternative in theory, but it meets many barriers in practice; while 500 kV MTDC (multi-terminal DC) may be chosen as a feasible solution.<>

  • IEE Colloquium on 'Structural Use of Composites in High Voltage Switchgear/Transmission Networks' (Digest No.223)

    None

  • Resonant inverters for HVDC and FACTS

    Series capacitor compensation can significantly increase the power transfer capabilities of transmission lines in a power system. High levels of series compensation have been avoided because of the resonances that can occur including subsynchronous shaft oscillations. With a phase controlled inductor in parallel, most resonances can be suppressed and the power flow modulated to damp power swing oscillations. This paper highlights some of the limitations of this technology and proposes an alternative scheme for stabilization of series compensation based on resonant inverters.<>

  • Principle and application of power system dynamic simulation

    A power system dynamic simulator is a physical simulator for normal operation and emergency conditions and has good simulated characteristics. In the last twenty years, simulators have given significant research results in the field of power system stability, shock load, new types of microcomputer-based protection relay and microcomputer-based excitation controllers at the Huazhong University of Science and Technology (HUST). The projects came from the Huazhong (central China) network, the first 500 kV high voltage transmission line and the first 500 kV HVDC line in China. Simulators provide the best test and research tools for postgraduate students, and as experimental devices, they are used in comprehensive power system courses.<>

  • The growth of power electronics in electrical power transmission systems

    This paper gives a perspective to the field of engineering to which Dr. John Ainsworth, who has just received the 1994 IEE Power Division Achievement Award, has made a substantial contribution. Reflecting the efforts of a few of its senior engineers with whom the author has worked during the last 30 years, this paper traces the developments of an industry which, though global in application, is only a niche market in size. It briefly reviews the state of the art and provides some pointers for the future.<>

  • HVDC tapping station: power tapping from a DC transmission line to a local AC network

    The authors describe a new concept for tapping off a small amount of power from a high voltage direct current (HVDC) transmission line to a local network. The proposed new concept for a series tapping implies power conversion in two steps from the line to a local AC network. This will make it possible to the use a single phase transformer between the DC line potential and ground. The converter bridge connected in series in the DC transmission is of the current source line-commutated type, while the other two converters are of the voltage-source forced-commutated type. The basic functions of the converter are described and illustrated by the results from simulations with the EMTP program.<>

  • AC line protection operating conditions in the near vicinity of HVDC installations

    HVDC transmission systems have historically been connected to AC networks with high short-circuit power. This has meant that the AC line protection has hardly been influenced by the HVDC transmission. With the increased use of static VAr compensators and trend towards high power transmission levels for HVDC systems, the AC system is no longer always strong in relation to HVDC transmission. As a result, the possible influence of HVDC transmission on AC line protection has to be considered. Two risk factors for improper AC line protection operation are defined by the author as well as the influence these have on different types of line protections.<>

  • HVMDC: a new concept to feed small loads

    Feeding small loads from HVDC transmission lines is a problem that has been investigated by many authors. The high voltage modulated direct current transmission (HVMDC) is a new concept to feed small loads which uses basically the same equipment involved on the conventional HVDC transmission. In this scheme, the DC current is used for transmitting large blocks of power to distant parts while a controlled superposed AC ripple is used to supply small loads close to the generating station. These small loads mat be located not very far from the rectifier's station due to the usual AC transmission long distance problems which depend upon the AC voltage, frequency and tranmission line characteristics. The authors present a theoretical steady-state analysis of such a HVMDC system and a preliminary HVMDC simulator study showing the feasibility of the proposed method, decreasing its advantages and problems.<>

  • High-performance controllers for HVDC transmission links

    The paper presents the design of a very simple fuzzy logic controller for HVDC transmission links for fast stabilisation of transient oscillations. The performance of this controller is compared with variable structure and adaptive controllers for a variety of short circuits and system operational changes. Unlike both adaptive and VSS controllers which require at least functionally an accurate model of the system dynamics, the fuzzy controller does not require a mathematical model of the system to estimate the control input under disturbance conditions. The transient simulation studies presented reveal the superior performance of the simple fuzzy controller in damping out system transients.<>



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