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Matrix Characterization for GFDM: Low Complexity MMSE Receivers and Optimal Filters

机译:GFDM的矩阵表征:低复杂度MMSE接收器和最佳滤波器

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In this paper, a new matrix-based characterization of generalized-frequency-division-multiplexing (GFDM) transmitter matrices is proposed, as opposed to traditional vector-based characterization with prototype filters. The characterization facilitates deriving properties of GFDM (transmitter) matrices, including conditions for GFDM matrices being nonsingular and unitary, respectively. Using the new characterization, the necessary and sufficient conditions for the existence of a form of low-complexity implementation for a minimum mean square error (MMSE) receiver are derived. Such an implementation exists under multipath channels if the GFDM transmitter matrix is selected to be unitary. For cases where this implementation does not exist, a low-complexity suboptimal MMSE receiver is proposed, with its performance approximating that of an MMSE receiver. The new characterization also enables derivations of optimal prototype filters in terms of minimizing receiver mean square error (MSE). They are found to correspond to the use of unitary GFDM matrices under many scenarios. The use of such optimal filters in GFDM systems does not cause the problem of noise enhancement, thereby demonstrating the same MSE performance as orthogonal frequency division multiplexing. Moreover, we find that GFDM matrices with a size of power of two are verified to exist in the class of unitary GFDM matrices. Finally, while the out-of-band (OOB) radiation performance of systems using a unitary GFDM matrix is not optimal in general, it is shown that the OOB radiation can be satisfactorily low if parameters in the new characterization are carefully chosen.
机译:本文提出了一种新的基于广义频分复用(GFDM)发射机矩阵的基于矩阵的表征,与传统的基于原型滤波器的基于矢量的表征相反。表征有助于推导GFDM(发送器)矩阵的属性,包括GFDM矩阵分别为非奇异和单一的条件。使用新的特征,得出了用于最小均方误差(MMSE)接收器的一种低复杂度实现形式的存在的充要条件。如果将GFDM发射机矩阵选择为单一的,则这种实现存在于多径信道下。对于不存在此实现的情况,提出了一种低复杂度次优的MMSE接收器,其性能接近MMSE接收器的性能。新的特性还可以根据最小化接收机均方误差(MSE)推导最佳原型滤波器。发现它们在许多情况下对应于单一GFDM矩阵的使用。在GFDM系统中使用这种最佳滤波器不会引起噪声增强的问题,从而证明了与正交频分复用相同的MSE性能。此外,我们发现,在二元GFDM矩阵的一类中已证明存在2的幂的GFDM矩阵。最后,虽然使用单一GFDM矩阵的系统的带外(OOB)辐射性能通常不是最佳的,但事实表明,如果仔细选择新特性中的参数,则OOB辐射可以令人满意地低。

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