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Fast Fading Implementation Optimization in an OFDMA System Simulator

机译:OFDMA系统模拟器中的快速衰落实现优化

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In this paper, we investigate methods for improving an OFDMA system simulator in terms of trade-off between complexity and radio channel implementation accuracy. Fast fading and SINR calculations are the most resource consuming tasks of a system simulator. In order to decrease their complexity, it is proposed to reduce the number of calculated channel transfer function (CTF) realizations according to the time and frequency correlation properties of the simulated radio channel. Besides, we highlight that the upsampling of the channel impulse response (CIR), which is needed for the fast Fourier transform (FFT) application, may introduce major errors in the channel frequency statistics if it is done by simple brute force grid alignment (BFGA) method. To achieve better results we introduce a low complex upsampling method which reduces the simulation inaccuracies significantly. The possibility to trade complexity for precision is shown. It is possible for instance to divide the fast fading and SINR calculation complexity by 50 while keeping a reasonable simulation accuracy.
机译:在本文中,我们研究了在复杂度和无线电信道实现精度之间进行权衡的改进OFDMA系统模拟器的方法。快速衰落和SINR计算是系统模拟器中最消耗资源的任务。为了降低它们的复杂性,提出了根据模拟无线电信道的时间和频率相关特性来减少所计算的信道传递函数(CTF)实现的数量。此外,我们强调指出,如果通过简单的蛮力网格对齐(BFGA)进行快速傅里叶变换(FFT)应用,则需要对信道冲激响应(CIR)进行上采样,这可能会在信道频率统计中引入重大误差。 ) 方法。为了获得更好的结果,我们引入了一种低复杂度的上采样方法,该方法大大降低了模拟误差。显示了以复杂度换取精度的可能性。例如,可以将快速衰落和SINR计算复杂度除以50,同时保持合理的仿真精度。

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