Robust design of Transmit Pulse Shape

© 2000 EUSIPCO. This paper considers the design of Transmit Pulse Shapes such that after transmission through a dispersive channel, the distorted pulse at the receiver fits in a prescribed template. The norm of the transmit pulse is minimized so as to reduce the effect of cross-talk at the receiver...

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Main Authors: Vo, Ba-Ngu, Cantoni, A.
Format: Conference Paper
Published: 2015
Online Access:http://hdl.handle.net/20.500.11937/25293
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author Vo, Ba-Ngu
Cantoni, A.
author_facet Vo, Ba-Ngu
Cantoni, A.
author_sort Vo, Ba-Ngu
building Curtin Institutional Repository
collection Online Access
description © 2000 EUSIPCO. This paper considers the design of Transmit Pulse Shapes such that after transmission through a dispersive channel, the distorted pulse at the receiver fits in a prescribed template. The norm of the transmit pulse is minimized so as to reduce the effect of cross-talk at the receiver end. This design problem is formulated as a Quadratic Programming problem with affine functional inequality constraints. In practice, errors in the implementation of the optimal filter cause the received pulse to violate the template constraints. We present a robust formulation which incorporate the uncertainties to ensure that the constraints are satisfied even in the presence of implementation errors. This technique is applied to determine the transmit pulse shape to be programmed on a Siemens FALC54, a T1 Line Interface Unit.
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institution Curtin University Malaysia
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spelling curtin-20.500.11937-252932017-01-30T12:47:45Z Robust design of Transmit Pulse Shape Vo, Ba-Ngu Cantoni, A. © 2000 EUSIPCO. This paper considers the design of Transmit Pulse Shapes such that after transmission through a dispersive channel, the distorted pulse at the receiver fits in a prescribed template. The norm of the transmit pulse is minimized so as to reduce the effect of cross-talk at the receiver end. This design problem is formulated as a Quadratic Programming problem with affine functional inequality constraints. In practice, errors in the implementation of the optimal filter cause the received pulse to violate the template constraints. We present a robust formulation which incorporate the uncertainties to ensure that the constraints are satisfied even in the presence of implementation errors. This technique is applied to determine the transmit pulse shape to be programmed on a Siemens FALC54, a T1 Line Interface Unit. 2015 Conference Paper http://hdl.handle.net/20.500.11937/25293 restricted
spellingShingle Vo, Ba-Ngu
Cantoni, A.
Robust design of Transmit Pulse Shape
title Robust design of Transmit Pulse Shape
title_full Robust design of Transmit Pulse Shape
title_fullStr Robust design of Transmit Pulse Shape
title_full_unstemmed Robust design of Transmit Pulse Shape
title_short Robust design of Transmit Pulse Shape
title_sort robust design of transmit pulse shape
url http://hdl.handle.net/20.500.11937/25293