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首页> 外文期刊>IEEE Transactions on Communications >Robust Design of Widely Linear Pre-Equalization Filters for Pre-Rake UWB Systems
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Robust Design of Widely Linear Pre-Equalization Filters for Pre-Rake UWB Systems

机译:前耙式UWB系统的宽线性预均衡滤波器的稳健设计

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Pre-rake ultra-wideband (UWB) systems are appealing for UWB communications applications which include devices with different processing capabilities so that signal processing complexity need to be shifted from the receiver of one or more devices to the transmitter of another. Recently, basic pre-rake schemes have been extended to include full pre-equalization, multiple-antenna, and multi-user interference processing. All these design approaches for pre-rake UWB systems have relied on the availability of accurate channel state information (CSI) at the transmitter. However, uncertainties in the acquisition of CSI can drastically affect the overall system performance. Therefore, in this paper, we present robust design methods for pre-equalization filters (PEFs) for pre-rake UWB systems that take CSI uncertainties into account. We treat the general case of a broadcast (i.e., multiuser) pre-rake UWB system, which includes single-user communication often considered in literature as a special case. For this general setting, we derive new PEF designs that improve system performance with imperfect CSI. Similar to the literature on robust filter designs for multiple-input multiple output (MIMO) systems, we consider two uncertainty models, namely stochastic and bounded uncertainty, which correspond to different performance optimization paradigms, and we adjust these according to channel estimation of UWB channels. As most of previous work on (pre-rake) UWB, we focus on binary transmission. We argue that widely linear filter design should be applied in this case and thus extend the robust filter design methodology accordingly. Our numerical results for typically UWB test channels demonstrate the efficacy of the proposed design procedures to achieve reliable communication in multiuser pre-rake UWB systems.
机译:瑞克前超宽带(UWB)系统对于包括具有不同处理能力的设备的UWB通信应用很有吸引力,因此信号处理复杂性需要从一个或多个设备的接收器转移到另一个设备的发送器。最近,基本的前耙方案已经扩展到包括完全的预均衡,多天线和多用户干扰处理。瑞克前UWB系统的所有这些设计方法都依赖于发射机处准确的信道状态信息(CSI)的可用性。但是,获取CSI的不确定性会严重影响整个系统的性能。因此,在本文中,我们介绍了考虑CSI不确定性的前耙UWB系统的预均衡滤波器(PEF)的鲁棒设计方法。我们将广播(即多用户)前耙UWB系统视为一般情况,其中包括文献中通常认为是特殊情况的单用户通信。对于这种一般设置,我们得出了新的PEF设计,它们通过不完善的CSI改善了系统性能。类似于关于多输入多输出(MIMO)系统的鲁棒滤波器设计的文献,我们考虑了两个不确定性模型,即随机不确定性和有界不确定性,它们对应于不同的性能优化范例,并根据UWB信道的信道估计进行调整。正如以前在(前耙)UWB上所做的大部分工作一样,我们专注于二进制传输。我们认为,在这种情况下应采用广泛的线性滤波器设计,从而相应地扩展了稳健的滤波器设计方法。我们针对典型UWB测试通道的数值结果证明了所提出的设计程序在多用户预耙UWB系统中实现可靠通信的功效。

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