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Low complexity bit and power allocation for MIMO-OFDM systems using space-frequency beamforming

机译:使用空频波束成形的MIMO-OFDM系统的低复杂度比特和功率分配

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This paper presents a new bit and power allocation algorithm for multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) systems. The optimal power allocation algorithm in terms of maximum capacity in MIMO-OFDM systems is given by the joint space-frequency water-filling (JSF-WF) algorithm. This algorithm involves multiple singular value decompositions and an iterative water-filling calculation over the subchannels, and therefore, has a high computational complexity. We present an algorithm with reduced bit and power allocation complexity. The proposed algorithm is based on a geometric channel model consisting of several clusters of subpaths, characterized by a set of physical parameters. It performs beamforming with null-steering towards the clusters' directions-of-departure, such that the frequency-selective MIMO channel is transformed into a flat fading MIMO channel. Thus, constant bit and power allocation over the frequency domain can be performed, which is simple to compute and implement. The performance of the proposed algorithm is evaluated and compared to the JSF-WF algorithm in terms of bit-error-rate, for known and misspecified channel model parameters. It is demonstrated that the proposed algorithm performance is slightly lower than the JSF-WF performance, while it significantly reduces the complexity of the allocation algorithm.
机译:本文提出了一种新的用于多输入多输出正交频分复用(MIMO-OFDM)系统的比特和功率分配算法。联合空频注水(JSF-WF)算法给出了MIMO-OFDM系统中最大容量的最优功率分配算法。该算法涉及多个奇异值分解和子信道上的迭代注水计算,因此具有很高的计算复杂度。我们提出了一种减少比特和功率分配复杂度的算法。所提出的算法基于由多个子路径群集组成的几何通道模型,其特征在于一组物理参数。它以朝向簇的离开方向的零转向执行波束成形,从而将频率选择性MIMO信道转换为平坦衰落MIMO信道。因此,可以在频域上执行恒定的比特和功率分配,这很容易计算和实现。对于已知和错误指定的信道模型参数,评估了所提出算法的性能并将其与JSF-WF算法进行了误码率比较。结果表明,所提出的算法性能略低于JSF-WF性能,同时大大降低了分配算法的复杂度。

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