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Carrier frequency offset compensation for ofdma systems using circular banded matrices

机译:使用圆带状矩阵的ofdma系统的载波频率偏移补偿

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Orthogonal frequency division multiple access (OFDMA) is a multiuser communication technique that allocates to each user a set of orthogonal carriers. In the presence of carrier frequency offset (CFO) the orthogonality among carriers is lost and it is impossible to recover the information of the users without CFO compensation. The resulting multiple access interference (MAI) can be described as an interference matrix of large dimensions. In order to compensate for the CFO, this matrix must be inverted, what is computationally complex. Therefore, a banded matrix approximation is usually introduced. In this paper we propose a circular banded matrix which is a better approximation to the actual interference matrix. Also, by means of numerical simulation, we show that neither banded nor circular banded matrices approximations work well for normalized CFO close to 0.5
机译:正交频分多址(OFDMA)是一种多用户通信技术,可为每个用户分配一组正交载波。在存在载波频率偏移(CFO)的情况下,会丢失载波之间的正交性,并且在没有CFO补偿的情况下无法恢复用户的信息。产生的多址干扰(MAI)可以描述为大尺寸的干扰矩阵。为了补偿CFO,必须对这个矩阵求逆,这在计算上很复杂。因此,通常引入带状矩阵近似。在本文中,我们提出了一个圆形带状矩阵,它是对实际干扰矩阵的更好近似。此外,通过数值模拟,我们表明带状或圆形带状矩阵近似均不适用于标准化CFO接近0.5

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