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On Time-Domain and Frequency-Domain MMSE-Based TEQ Design for DMT Transmission

机译:基于时域和频域MMSE的DMT传输TEQ设计

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We reconsider the minimum mean square error (MMSE) time-domain equalizer (TEQ), bitrate maximizing TEQ (BM-TEQ), and per-tone equalizer design (PTEQ) for discrete multitone (DMT) transmission and cast them in a common least-squares (LS) based framework. The MMSE-TEQ design criterion can be formulated as a constrained linear least-squares (CLLS) criterion that minimizes a time-domain (TD) error energy. From this CLLS-based TD-MMSE-TEQ criterion, we derive two new least-squares (LS) based frequency-domain (FD) MMSE-TEQ design criteria: a CLLS-based FD-MMSE-TEQ criterion and a so-called separable nonlinear LS (SNLLS) based FD-MMSE-TEQ design. Finally, the original BM-TEQ design is shown to be equivalent to a so-called iteratively-reweighted (IR) version of the SNLLS-based FD-MMSE-TEQ design. This LS-based framework then results in the following contributions. The new, IR-SNLLS-based BM-TEQ design criterion gives rise to an elegant, iterative, fast converging, Gauss-Newton-based design algorithm that exploits the separability property. The intermediate FD-MMSE-TEQ designs establish a link between the TD-MMSE-TEQ on one hand and the BM-TEQ and the PTEQ on the other hand. Moreover, the considered LS-based equalizer designs--although at first sight very different in nature--exhibit remarkable correspondence when turned into equivalent generalized eigenvalue problems.
机译:我们重新考虑了离散多音(DMT)传输的最小均方误差(MMSE)时域均衡器(TEQ),比特率最大化TEQ(BM-TEQ)和每音均衡器设计(PTEQ),并将它们转换为最小-正方形(LS)的框架。 MMSE-TEQ设计标准可以公式化为最小化时域(TD)误差能量的约束线性最小二乘(CLLS)标准。从基于CLLS的TD-MMSE-TEQ准则中,我们得出两个新的基于最小二乘法(LS)的频域(FD)MMSE-TEQ设计准则:基于CLLS的FD-MMSE-TEQ准则和所谓的基于可分离非线性LS(SNLLS)的FD-MMSE-TEQ设计。最后,原始的BM-TEQ设计与基于SNLLS的FD-MMSE-TEQ设计的所谓的迭代加权(IR)版本等效。然后,基于LS的框架将带来以下贡献。基于IR-SNLLS的新BM-TEQ设计标准提出了一种优雅,迭代,快速收敛,基于高斯牛顿的设计算法,该算法利用了可分离性。中间FD-MMSE-TEQ设计一方面在TD-MMSE-TEQ与BM-TEQ和PTEQ之间建立了链接。此外,考虑到的基于LS的均衡器设计(尽管乍一看本质上有很大不同),当转化为等效的广义特征值问题时,表现出显着的对应性。

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