A robust quadratically constrained adaptive blind multiuser receiver for cellular DS/CDMA systems

A. Elnashar, S. Elnoubi, H. Elmikati
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引用次数: 4

Abstract

A new low-computational complexity robust adaptive blind multiuser receiver based on a constrained optimization approach with multiple constraints and a quadratic inequality (QI) constraint on the weight vector norm is developed. A diagonal loading technique is required to apply the quadratic constraint where the diagonal loading value is adjusted to satisfy the constrained value. Implementing the quadratic constraint into adaptive update algorithms such as least-mean-square (LMS) or recursive-least-mean (RLS) seems to be a difficult task. The minimum output energy (MOE) detector is implemented using a new adaptive algorithm based on the partition linear interference canceller (PLIC) structure with multiple constraints and a QI constraint on the weight vector norm. A new optimal variable loading (VL) technique, which is capable of providing robust control against signal mismatch with low computational complexity, is adopted. Simulations in a rich multipath environment with near-far effect are presented to demonstrate the robustness and fidelity of the proposed detector.
一种用于蜂窝DS/CDMA系统的鲁棒二次约束自适应盲多用户接收机
提出了一种基于多重约束和权向量范数二次不等式约束的约束优化方法的低计算复杂度鲁棒自适应盲多用户接收机。采用对角线加载技术来应用二次约束,对角线加载值可以调整以满足约束值。在最小均方(LMS)或递归最小均方(RLS)等自适应更新算法中实现二次约束似乎是一项艰巨的任务。最小输出能量(MOE)检测器采用一种新的自适应算法实现,该算法基于多重约束的分区线性干涉消除器(PLIC)结构和对权向量范数的QI约束。采用了一种新的最优变负载(VL)技术,该技术既能对信号失配提供鲁棒控制,又具有较低的计算复杂度。在具有远近效应的多径环境下进行了仿真,验证了该检测器的鲁棒性和保真度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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