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首页> 外文期刊>Signal Processing, IEEE Transactions on >Designing Low-Complexity Near-Optimal Multiple-Symbol Detectors for Impulse Radio UWB Systems
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Designing Low-Complexity Near-Optimal Multiple-Symbol Detectors for Impulse Radio UWB Systems

机译:为脉冲无线UWB系统设计低复杂度的近最佳多符号检测器

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摘要

Multiple-symbol detection has recently caught attention in ultrawideband (UWB) communications because of its high performance without requiring explicit channel estimation. In this context, the generalized likelihood ratio test (GLRT) for multiple-symbol detection problem is developed to jointly detect multiple symbols, which exhibits considerable error performance improvement over transmitted reference transmissions methods. Unfortunately, the GLRT is a Boolean quadratic programming (BQP) problem, which is generally nondeterministic polynomial hard (NP-hard). In this paper, we propose two near-optimal detectors with polynomial complexity. The first detector performs semidefinite relaxation to approximately solve the BQP problem (called SDP-MSD). The second detector is based on a sphere-based relaxation of the BQP problem [we refer to this as modified unconstrained relaxation multiple-symbol detector (MUR-MSD)]. Both detectors achieve near-optimal performance, while the SDP-MSD performs slightly better than the MUR-MSD at the price of higher computational complexity. Furthermore, the MUR-MSD can be treated as a further nontight relaxation of SDP-MSD. Simulations are utilized to validate our findings and to demonstrate performance robustness to multiaccess interference.
机译:多符号检测由于其高性能而无需显式的信道估计,最近已引起超宽带(UWB)通信的关注。在此背景下,针对多符号检测问题的广义似然比测试(GLRT)被开发为可以联合检测多个符号,与传输参考传输方法相比,它具有显着的错误性能改进。不幸的是,GLRT是布尔二次规划(BQP)问题,通常是不确定的多项式硬性(NP-hard)。在本文中,我们提出了两个具有多项式复杂度的近最优检测器。第一个检测器执行半确定松弛,以近似解决BQP问题(称为SDP-MSD)。第二个检测器基于BQP问题的基于球面的弛豫[我们将其称为修正的无约束弛豫多符号检测器(MUR-MSD)]。两个检测器均达到接近最佳的性能,而SDP-MSD的性能比MUR-MSD略好,但计算复杂度更高。此外,MUR-MSD可被视为SDP-MSD的进一步不紧密松弛。利用仿真来验证我们的发现并证明对多址干扰的性能鲁棒性。

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