Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM.

碩士 === 大葉大學 === 電信工程學系碩士班 === 95 === This paper deals with the design of blind (without exploiting training sequences and undesired users’ time-hopping (TH) code) adaptive mobile receiver in ultra wideband(UWB) communication system. We first derive the batch mode constrained minimum-output-energy (M...

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Main Authors: Kuan-Yi Li, 李冠逸
Other Authors: Wei-Chiang Wu
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/52878864743693337246
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spelling ndltd-TW-095DYU004350152015-10-13T16:41:02Z http://ndltd.ncl.edu.tw/handle/52878864743693337246 Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM. 在跳時PAM超寬頻通信系統中之盲蔽式適應性信號接收 Kuan-Yi Li 李冠逸 碩士 大葉大學 電信工程學系碩士班 95 This paper deals with the design of blind (without exploiting training sequences and undesired users’ time-hopping (TH) code) adaptive mobile receiver in ultra wideband(UWB) communication system. We first derive the batch mode constrained minimum-output-energy (MOE) receiver. Furthermore, a blind channel estimator is deduced by choosing appropriate constraints to ensure no desired signal cancellation. To reduce the computation load, we propose a blind adaptive channel estimator, which is designed to meet the criterion of maximizing the minimum possible MOE receiver’s output energy. The estimated channel parameters are employed to determine the weight vector at the mobile station (MS) receiver. The proposed algorithm are based on Minimum Power Distortionlessly Response(MPDR) and Linear Constraints Minimum Power(LCMP) as well as gradient search adaptation rule. Simulation results demonstrate that the performance of the proposed blind adaptive mobile receiver converge to the optimum batch-mode MOE receiver. Moreover, the algorithm are verified to be robust to near-far problem. Wei-Chiang Wu 武維疆 2007 學位論文 ; thesis 70 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 大葉大學 === 電信工程學系碩士班 === 95 === This paper deals with the design of blind (without exploiting training sequences and undesired users’ time-hopping (TH) code) adaptive mobile receiver in ultra wideband(UWB) communication system. We first derive the batch mode constrained minimum-output-energy (MOE) receiver. Furthermore, a blind channel estimator is deduced by choosing appropriate constraints to ensure no desired signal cancellation. To reduce the computation load, we propose a blind adaptive channel estimator, which is designed to meet the criterion of maximizing the minimum possible MOE receiver’s output energy. The estimated channel parameters are employed to determine the weight vector at the mobile station (MS) receiver. The proposed algorithm are based on Minimum Power Distortionlessly Response(MPDR) and Linear Constraints Minimum Power(LCMP) as well as gradient search adaptation rule. Simulation results demonstrate that the performance of the proposed blind adaptive mobile receiver converge to the optimum batch-mode MOE receiver. Moreover, the algorithm are verified to be robust to near-far problem.
author2 Wei-Chiang Wu
author_facet Wei-Chiang Wu
Kuan-Yi Li
李冠逸
author Kuan-Yi Li
李冠逸
spellingShingle Kuan-Yi Li
李冠逸
Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM.
author_sort Kuan-Yi Li
title Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM.
title_short Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM.
title_full Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM.
title_fullStr Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM.
title_full_unstemmed Direct Blind Adaptive Signal Reception In Ultra-Wideband Communication System Employing Time-Hopping PAM.
title_sort direct blind adaptive signal reception in ultra-wideband communication system employing time-hopping pam.
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/52878864743693337246
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AT kuanyili zàitiàoshípamchāokuānpíntōngxìnxìtǒngzhōngzhīmángbìshìshìyīngxìngxìnhàojiēshōu
AT lǐguānyì zàitiàoshípamchāokuānpíntōngxìnxìtǒngzhōngzhīmángbìshìshìyīngxìngxìnhàojiēshōu
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