Subspace multiuser receivers for UWB communication systems

Ping Liu, Zhengyuan Xu, Jin Tang
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引用次数: 14

Abstract

In a typical impulse radio ultra-wideband (UWB) communication environment, transmitted signal carries user's information in pulse positions and undergoes fading from a number of propagation paths. A conventional RAKE receiver may explore path diversity for better performance, but is unable to suppress multiple access interference. Multiuser receiver can significantly improve detection performance. However, it requires channel state information. To seek this information, we adopt a channel input/output model that exhibits a structure similar to a code-division multiple access system. In particular, code matrices for each user can be defined from its unique time-hopping sequence. Then subspace technique is applied to estimate each channel after some necessary modification due to particular formats of defined inputs. Subsequently, zero-forcing and minimum mean-square-error receivers are designed, applicable for both uplink and downlink, and different from existing multiuser detection (MUD) methods that assume perfect channel knowledge.
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超宽带通信系统的子空间多用户接收机
在典型的脉冲无线电超宽带(UWB)通信环境中,传输的信号在脉冲位置携带用户信息,并在多个传播路径中经历衰落。传统的RAKE接收器可以探索路径分集以获得更好的性能,但无法抑制多址干扰。多用户接收可以显著提高检测性能。但是,它需要通道状态信息。为了寻求这些信息,我们采用了一种通道输入/输出模型,该模型具有类似于码分多址系统的结构。特别是,每个用户的代码矩阵可以根据其唯一的跳时序列来定义。然后根据输入的特定格式进行必要的修改后,应用子空间技术对每个通道进行估计。随后,设计了强制零和最小均方误差接收器,适用于上行链路和下行链路,不同于现有的多用户检测(MUD)方法,它假设了完美的信道知识。
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