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A MAP Overhead Aware Two-Dimensional OFDMA Burst Construction Algorithm

机译:MAP开销感知的二维OFDMA突发构造算法

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Conventional orthogonal frequency division multiple access (OFDMA) burst construction methods can only support limited numbers of connections due to the map overhead and corresponding limitations in the numbers of orthogonal resources blocks, which limits the capacity of current 4G and the following 5th generation (5G) networks. This study therefore provides a novel OFDMA burst construction algorithm and enhanced burst indexing aware algorithm (EHA), which try to maximize the throughput while considering the subchannel diversity and optimizing burst indexing issues. The EHA not only allocates the subchannels with the best channel quality for each burst, but also groups the bursts to alleviate the MAP overhead. Simulation results showed that the EHA yields two times the throughput that has been achieved using previous algorithms under a heavy load. Two contributions of the EHA are: (1) the overhead of burst indexing decreases because massive numbers of connections can be accommodated by one burst; and (2) the overall throughput increases due to that one connection with large data transferring requirements can be split and distributed into several bursts and placed on the subchannels with good channel quality to adopt better modulation coding scheme (MCS), if the saved bandwidth in this burst construction is more than the increased overhead of burst indexing.
机译:传统的正交频分多址(OFDMA)突发构建方法由于映射开销和正交资源块数量的相应限制而只能支持有限数量的连接,这限制了当前4G和随后的第5代(5G)的容量网络。因此,本研究提供了一种新颖的OFDMA突发构建算法和增强的突发索引感知算法(EHA),它们试图在考虑子信道分集并优化突发索引问题的同时最大化吞吐量。 EHA不仅为每个突发分配具有最佳信道质量的子信道,还对突发进行分组以减轻MAP开销。仿真结果表明,在重载下,EHA的吞吐量是以前算法的两倍。 EHA的两个贡献是:(1)突发索引的开销减少了,因为一个突发可以容纳大量连接。 (2)由于具有较大数据传输要求的一个连接可以拆分并分配到多个突发中,并以良好的信道质量放置在子信道上,从而采用更好的调制编码方案(MCS),因此总吞吐量提高了,前提是节省了带宽。这种突发结构不仅仅是突发索引的增加的开销。

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