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Adaptive bit and power loading algorithm with low complexity in MIMO-OFDM systems

机译:MIMO-OFDM系统中低复杂度的自适应比特和功率加载算法

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摘要

Two adaptive power and bit loading algorithms to maximize the throughput of MIMO-OFDM systems in frequency selective fading environment are proposed. The two algorithms allocate bit based on maximizing the overall throughput. One algorithm allocates power based on guaranteeing that the bit error rate (BER) of each sub-carrier and the total allocated power remain below a target BER threshold and a power threshold, respectively; another one allocates power based on guaranteeing that the mean BER of sub-carriers and the total allocated power remain below a target BER threshold and a power threshold, respectively. The simulation results show that the proposed algorithms can achieve faster throughput with lower computational complexity, which indicates that the proposed algorithms are effective when compared to some existing algorithms.
机译:提出了两种自适应功率和比特加载算法,以在频率选择性衰落环境中最大化MIMO-OFDM系统的吞吐量。这两种算法基于最大化整体吞吐量来分配位。一种算法是基于保证每个子载波的误码率(BER)和总分配功率分别保持在目标BER阈值和功率阈值以下来分配功率的;另一者基于保证子载波的平均BER和总分配功率分别保持在目标BER阈值和功率阈值以下而进行分配。仿真结果表明,所提算法能够以较低的计算复杂度实现更快的吞吐率,表明与现有算法相比,所提算法是有效的。

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