The Experts below are selected from a list of 10263 Experts worldwide ranked by ideXlab platform

Michael Schröter - One of the best experts on this subject based on the ideXlab platform.

  • EWDTS - Expanding wireless bandwidth in a power-efficient way: developing a viable mm-wave Radio Technology
    East-West Design & Test Symposium (EWDTS 2013), 2013
    Co-Authors: Daniel Foty, Bruce Smith, Saurabh Sinha, Michael Schröter
    Abstract:

    In recent years, demand for wireless bandwidth has been growing rapidly; a recent study has predicted that by 2015, demand will increase to twenty-six times that of today. However, the ability of wireless networks to handle even contemporary traffic is becoming problematic, with network overloading becoming a growing and widening problem; if data traffic increases by even a fraction of projections, wireless networks (as presently constructed) will be completely unable to cope with demand. This paper examines the current state of mm-wave Radio Technology for addressing this bandwidth/power-consumption crisis. The main promise of mm-wave Radio is a route to power-efficient bandwidth - the ability to greatly increase the available data rates without increasing power consumption. To deliver successful mm-wave Radio Technology for general use, a number of multifaceted challenges will need to be addressed; these range from basic integrated circuit design to network design and network management.

  • Expanding wireless bandwidth in a power-efficient way: developing a viable mm-wave Radio Technology
    East-West Design & Test Symposium (EWDTS 2013), 2013
    Co-Authors: Daniel Foty, Bruce Smith, Saurabh Sinha, Michael Schröter
    Abstract:

    In recent years, demand for wireless bandwidth has been growing rapidly; a recent study has predicted that by 2015, demand will increase to twenty-six times that of today. However, the ability of wireless networks to handle even contemporary traffic is becoming problematic, with network overloading becoming a growing and widening problem; if data traffic increases by even a fraction of projections, wireless networks (as presently constructed) will be completely unable to cope with demand. This paper examines the current state of mm-wave Radio Technology for addressing this bandwidth/power-consumption crisis. The main promise of mm-wave Radio is a route to power-efficient bandwidth - the ability to greatly increase the available data rates without increasing power consumption. To deliver successful mm-wave Radio Technology for general use, a number of multifaceted challenges will need to be addressed; these range from basic integrated circuit design to network design and network management.

Han Peng - One of the best experts on this subject based on the ideXlab platform.

  • Design for underwater platform's attitude data acquisition system based on software Radio Technology
    2009 4th IEEE Conference on Industrial Electronics and Applications, 2009
    Co-Authors: Han Peng, Zhang Xiaomin, Hou Tieshuang, Xiang Jinglin
    Abstract:

    That the underwater platform rocks constantly in the water will lead to serious bias in the long-range detection to a target. Therefore it is necessary to track and predict the attitude of the swaying platform accurately. This paper introduced an attitude data acquisition system which uses the principle of software Radio Technology, and can operate steadily for a long time based on a low power electronic compass. Meanwhile, the function that controls the sampling model in the dynamic condition has been verified correctly with the prototype of data acquisition system.

  • Attitude Data Acquiring System Design for Underwater Platform Based on Software-defined Radio Technology
    Journal of Detection and Control, 2006
    Co-Authors: Han Peng
    Abstract:

    The underwater platform rocks constantly in the water, which will lead to serious bias in the long-range detection of the target.Therefore,it is necessary to track and predict the attitude of sway platform accurately.A attitude data acquiring system is designed.This system is constructed with the internal structure of software-defined Radio Technology,which can work autonomously long time based on one low power-consumption electronic compass.Finally,the functionality that change sampling mode in dynamic condition has been verified with the prototype of data acquiring system.

Xiang Jinglin - One of the best experts on this subject based on the ideXlab platform.

  • Design for underwater platform's attitude data acquisition system based on software Radio Technology
    2009 4th IEEE Conference on Industrial Electronics and Applications, 2009
    Co-Authors: Han Peng, Zhang Xiaomin, Hou Tieshuang, Xiang Jinglin
    Abstract:

    That the underwater platform rocks constantly in the water will lead to serious bias in the long-range detection to a target. Therefore it is necessary to track and predict the attitude of the swaying platform accurately. This paper introduced an attitude data acquisition system which uses the principle of software Radio Technology, and can operate steadily for a long time based on a low power electronic compass. Meanwhile, the function that controls the sampling model in the dynamic condition has been verified correctly with the prototype of data acquisition system.

Daniel Foty - One of the best experts on this subject based on the ideXlab platform.

  • EWDTS - Expanding wireless bandwidth in a power-efficient way: developing a viable mm-wave Radio Technology
    East-West Design & Test Symposium (EWDTS 2013), 2013
    Co-Authors: Daniel Foty, Bruce Smith, Saurabh Sinha, Michael Schröter
    Abstract:

    In recent years, demand for wireless bandwidth has been growing rapidly; a recent study has predicted that by 2015, demand will increase to twenty-six times that of today. However, the ability of wireless networks to handle even contemporary traffic is becoming problematic, with network overloading becoming a growing and widening problem; if data traffic increases by even a fraction of projections, wireless networks (as presently constructed) will be completely unable to cope with demand. This paper examines the current state of mm-wave Radio Technology for addressing this bandwidth/power-consumption crisis. The main promise of mm-wave Radio is a route to power-efficient bandwidth - the ability to greatly increase the available data rates without increasing power consumption. To deliver successful mm-wave Radio Technology for general use, a number of multifaceted challenges will need to be addressed; these range from basic integrated circuit design to network design and network management.

  • Expanding wireless bandwidth in a power-efficient way: developing a viable mm-wave Radio Technology
    East-West Design & Test Symposium (EWDTS 2013), 2013
    Co-Authors: Daniel Foty, Bruce Smith, Saurabh Sinha, Michael Schröter
    Abstract:

    In recent years, demand for wireless bandwidth has been growing rapidly; a recent study has predicted that by 2015, demand will increase to twenty-six times that of today. However, the ability of wireless networks to handle even contemporary traffic is becoming problematic, with network overloading becoming a growing and widening problem; if data traffic increases by even a fraction of projections, wireless networks (as presently constructed) will be completely unable to cope with demand. This paper examines the current state of mm-wave Radio Technology for addressing this bandwidth/power-consumption crisis. The main promise of mm-wave Radio is a route to power-efficient bandwidth - the ability to greatly increase the available data rates without increasing power consumption. To deliver successful mm-wave Radio Technology for general use, a number of multifaceted challenges will need to be addressed; these range from basic integrated circuit design to network design and network management.

Ravi Sekhar Yarrabothu - One of the best experts on this subject based on the ideXlab platform.

  • 5G: Radio
    Powering the Internet of Things With 5G Networks, 2017
    Co-Authors: Ravi Sekhar Yarrabothu
    Abstract:

    © 2018, IGI Global. All rights reserved. In evolution towards a successful mobile communications, the Radio Technology plays major role and the chosen Radio Technology should be spectrally efficient, robust and reliable. OFDM provided the much needed spectral efficiency, reliability, robustness and scalability for LTE, compared to the previous access methods such as TDMA, FDMA, and CDMA. For 5G, we should look for more spectrally efficient and massively scalable Radio Technology to cater to IoT and high bandwidth applications. The objective of this chapter is to introduce the 5G Radio system, its challenges from both user and network perspective, and the key disruptive technologies for 5G - such as carrier aggregation, waveform engineering, full duplex, Multi-RAT, flexible networks, and Massive MIMO. Finally, the chapter discusses the current developments in 5G Radio research.