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Adaptive reduced-rank interference suppression for DS-UWB systems based on the Widely Linear Multistage Wiener Filter

机译:基于宽线性多级维纳滤波器的DS-UWB系统自适应降秩干扰抑制

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We propose a Widely Linear Multistage Wiener Filter (WL-MSWF) receiver to suppress the multi-user interference and the inter/intra-symbol interference in a high data rate Direct Sequence Ultra Wideband (DS-UWB) system. To this end, a non-circular modulation, e.g., Binary Phase Shift Keying (BPSK), is applied. We develop reduced-rank versions of the Least Mean Square (LMS) and the Recursive Least Squares (RLS) algorithms based on the theory of the WL-MSWF. The convergence performance of the proposed WL-MSWF algorithms is shown via simulations in a line-of-sight office scenario and then compared to the linear estimation counterparts. In order to reduce the power consumption due to the high-speed and high-resolution Analog-to-Digital Converters (ADCs), we also evaluate the performance of the WL-MSWF algorithms when a one-bit ADC is employed. The proposed WL-MSWF receiver does not only have a lower complexity compared to the full-rank scheme, but also exhibits a superior performance to the corresponding linear receiver employing the existing MSWF.
机译:我们提出了一种宽线性多级维纳滤波器(WL-MSWF)接收器,以抑制高数据速率直接序列超宽带(DS-UWB)系统中的多用户干扰和符号间/符号间干扰。为此,应用了非圆形调制,例如二进制相移键控(BPSK)。我们基于WL-MSWF理论开发了最小均方(LMS)和递归最小二乘(RLS)算法的降秩版本。拟议的WL-MSWF算法的收敛性能通过在视距办公室场景中的仿真来显示,然后与线性估计对应物进行比较。为了减少由于高速和高分辨率模数转换器(ADC)引起的功耗,我们还评估了采用一位ADC时WL-MSWF算法的性能。所提出的WL-MSWF接收器不仅比全秩方案具有更低的复杂度,而且与采用现有MSWF的相应线性接收器相比,具有更好的性能。

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