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Robust power control for CDMA cellular communication networks using quantitative feedback theory
Date
2007
Abstract
In this work, a new transmission power control algorithm based on the use of Quantitative Feedback Theory (QFT) is proposed for CDMA wireless cellular networks. The QFT based loop-shaping framework that is considered fully compensates the effect of link round-trip time delay within the network. The design supports predefined levels of performance robustness in the presence of channel uncertainty and signal interference. A novel stability boundary is introduced based on the use of the Jury Array that informs the necessary trade-off between disturbance attenuation and system stability. Extensive simulation results are provided that illustrate the effectiveness of the proposed methodology.
Supervisor
Description
peer-reviewed
Publisher
IEEE Computer Society
Citation
Decision and Control (46th);
Collections
Files
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alavi%20Robust.pdf
Adobe PDF, 156.47 KB
Funding code
Funding Information
Sustainable Development Goals
External Link
Type
Meetings and Proceedings
Rights
https://creativecommons.org/licenses/by-nc-sa/1.0/
