Wireless Transceiver Design for High Velocity Scenarios

نویسنده

  • Tao Xu
چکیده

In memory of my grandparents and dedicated to my parents Summary This thesis is dedicated to transceiver designs for high data-rate wireless communication systems with rapidly moving terminals. The challenges are twofold. On the one hand, more spectral bandwidth of the transmitted signals is required by future wireless systems to obtain higher transmission rates, which can result in the frequency selectivity of the communication channels. On the other hand, Doppler effects emerge when high mobile speeds are present, which can result in the time selectivity of the communication channels. Therefore, it is likely that future wireless communication systems operate in doubly-selective channels, which impose many difficulties on transceiver designs. In this thesis, we investigate these challenges in the following four scenarios, and propose a number of corresponding solutions. OFDM over Narrowband Channels: Orthogonal frequency-division multiplexing (OFDM) is a typical multiple-carrier transmission technique. In a narrowband scenario, Doppler effects are well approximated as frequency shifts. In this manner, a narrowband doubly-selective channel for OFDM systems can be approximately characterized as a banded matrix especially when a basis expansion model (BEM) is exploited to model the channel. It thus allows to reduce the complexity of the channel equalization. However, there are various different BEM's available. We identify a particular BEM which leads to a more efficient hardware architecture than other choices, while still maintaining a high modeling accuracy. i OFDM over Wideband Channels: The Doppler effect manifests itself as a distinct phenomenon in wide-band channels compared to narrowband channels. Specifically, the wideband signal waveform is measurably dilated or compressed when Doppler is present rather than just frequency-shifted. This unique nature of wideband time-varying channels requires new designs for wide-band OFDM systems. We first quantify the amount of interference resulting from wideband doubly-selective channels which follow the multi-scale/multi-lag (MSML) model. Then we discuss an equalization method for wideband channels either in the frequency domain or in the time domain. A novel optimum resampling procedure is also introduced, which is normally unnecessary in narrowband systems. a uniform data rate on each subcarrier, which is inherently mismatched with wideband time-varying channels. In fact, the time variation of wide-band channels, i.e., the Doppler scales, imply a non-uniform sampling mechanism. To mitigate this, we propose a novel multi-rate transmission scheme by placing the information symbols at different non-overlapping sub-bands where each sub-band has a distinctive band-width. To combat the MSML effect of the channel, a filterbank is …

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

A 910MHz Injection Locked BFSK Transceiver for Wireless Body Sensor Network Using Colpitts Oscillator

A 910MHz high efficiency RF transceiver for Wireless Body Area Network in medical application is presented in this paper. High energy efficiency transmitter and receiver architectures are proposed. In wireless body sensor network, the transmitter must have higher efficiency compared with the receiver because a large amount of data is sent from sensor node to receiver of the base station and sma...

متن کامل

FPGA-Based Vehicular Channel Emulator for Real-Time Performance Evaluation of IEEE 802.11p Transceivers

IEEE 802.11p is one of the most promising future wireless standards due to the increasing demand of vehicular communication applications. At the time of writing, the document of the standard is in draft and much research is still required to study and improve the performance of transceivers in common vehicular scenarios. In this paper, we present a framework to evaluate the PHY layer of IEEE 80...

متن کامل

13th Int'l Symposium on Quality Electronic Design

The Network-on-Chip (NoC) is an enabling technology to integrate large numbers of embedded cores on a single die. Traditional multi-core designs based on the NoC paradigm suffer from high latency and power dissipation due to the inherent multi-hop nature of communication. The performance of NoC fabrics can be significantly enhanced by introducing long-range, low power, and high-bandwidth single...

متن کامل

H.263 Based Video Transceiver for Wireless Camera System

Abstract—In this paper, a design of H.263 based wireless video transceiver is presented for wireless camera system. It uses standard WIFI transceiver and the covering area is up to 100m. Furthermore the standard H.263 video encoding technique is used for video compression since wireless video transmitter is unable to transmit high capacity raw data in real time and the implemented system is cap...

متن کامل

Evaluating the Effect of a Topology Control Scheme on Application Layer Traffic Scenarios in Infrastructure Wireless Mesh Networks

Infrastructure Wireless Mesh Networks (IWMNs) are increasingly used to bridge the digital divide in rural areas around the world. Rural African areas in particular require energy efficient I-WMNs as the nodes comprising the I-WMN backbone network may be battery-powered in the absence of reliable power supplies. These networks are deployed to support a variety of applications, the most common be...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره   شماره 

صفحات  -

تاریخ انتشار 2013