Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel Effects
This paper presents a power-efficient maskconstrained ultra-wideband (UWB) waveform design with radio channel effects taken into consideration. Based on a finite impulse response (FIR) filter, we develop a convex optimization model with respect to the autocorrelation of the filter coefficients to op...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Spolecnost pro radioelektronicke inzenyrstvi
2011-04-01
|
Series: | Radioengineering |
Subjects: | |
Online Access: | http://www.radioeng.cz/fulltexts/2011/11_01_179_183.pdf |
id |
doaj-4a8e4d5b7dd545a0bff2545c0b583496 |
---|---|
record_format |
Article |
spelling |
doaj-4a8e4d5b7dd545a0bff2545c0b5834962020-11-25T00:51:50ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122011-04-01201179183Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel EffectsYipeng LiuQun WanXiaoli ChuThis paper presents a power-efficient maskconstrained ultra-wideband (UWB) waveform design with radio channel effects taken into consideration. Based on a finite impulse response (FIR) filter, we develop a convex optimization model with respect to the autocorrelation of the filter coefficients to optimize the transmitted signal power spectrum, subject to a regulatory emission mask. To improve power efficiency, effects of transmitter radio frequency (RF) components are included in the optimization of the transmitter-output waveform, and radio propagation effects are considered for obtaining the most efficient waveform at the receiver. Optimum coefficients of the FIR filter are obtained through spectral factorization of their autocorrelations. Simulation results show that the proposed method is able to maximize the transmitted UWB signal power under mask constraints set by regulatory authorities, while mitigating the power loss caused by channel attenuations. www.radioeng.cz/fulltexts/2011/11_01_179_183.pdfPower efficiencyultra-wideband (UWB)green communicationradio propagation effectwaveform design |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yipeng Liu Qun Wan Xiaoli Chu |
spellingShingle |
Yipeng Liu Qun Wan Xiaoli Chu Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel Effects Radioengineering Power efficiency ultra-wideband (UWB) green communication radio propagation effect waveform design |
author_facet |
Yipeng Liu Qun Wan Xiaoli Chu |
author_sort |
Yipeng Liu |
title |
Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel Effects |
title_short |
Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel Effects |
title_full |
Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel Effects |
title_fullStr |
Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel Effects |
title_full_unstemmed |
Power-Efficient Ultra-Wideband Waveform Design Considering Radio Channel Effects |
title_sort |
power-efficient ultra-wideband waveform design considering radio channel effects |
publisher |
Spolecnost pro radioelektronicke inzenyrstvi |
series |
Radioengineering |
issn |
1210-2512 |
publishDate |
2011-04-01 |
description |
This paper presents a power-efficient maskconstrained ultra-wideband (UWB) waveform design with radio channel effects taken into consideration. Based on a finite impulse response (FIR) filter, we develop a convex optimization model with respect to the autocorrelation of the filter coefficients to optimize the transmitted signal power spectrum, subject to a regulatory emission mask. To improve power efficiency, effects of transmitter radio frequency (RF) components are included in the optimization of the transmitter-output waveform, and radio propagation effects are considered for obtaining the most efficient waveform at the receiver. Optimum coefficients of the FIR filter are obtained through spectral factorization of their autocorrelations. Simulation results show that the proposed method is able to maximize the transmitted UWB signal power under mask constraints set by regulatory authorities, while mitigating the power loss caused by channel attenuations. |
topic |
Power efficiency ultra-wideband (UWB) green communication radio propagation effect waveform design |
url |
http://www.radioeng.cz/fulltexts/2011/11_01_179_183.pdf |
work_keys_str_mv |
AT yipengliu powerefficientultrawidebandwaveformdesignconsideringradiochanneleffects AT qunwan powerefficientultrawidebandwaveformdesignconsideringradiochanneleffects AT xiaolichu powerefficientultrawidebandwaveformdesignconsideringradiochanneleffects |
_version_ |
1725243620752097280 |