论文标题

柔性子载波分配用于交织频分多访问

Flexible Subcarrier Allocation for Interleaved Frequency Division Multiple Access

论文作者

Shao, Yulin, Liew, Soung Chang

论文摘要

交错的频划分多访问(IFDMA)和正交FDMA(OFDMA)属于一类信号调制和多访问技术,其中多重用户的信息是多重的,并在共享频谱中的子载波上携带。与OFDMA相比,IFDMA具有较低的峰值功率比(PAPR)。但是,IFDMA对子载波分配构成了两个严格的约束:1)用户占用的子载波必须在可用的子载波中均匀间隔。 2)用户使用的子载波数量必须是子载体总数的分隔线。本文研究了如何克服这些约束,以允许IFDMA中的柔性和细粒的子载波分配。具体而言,我们提出了1)比较反转的子载波分配方案,在该方案中,分配均匀间隔的子载波的问题被转化为填充连续箱的更直观的问题; 2)多流IFDMA方案,用户可以具有任意数量的子载波。对于用户请求以同步方式到达的同步场景,我们表明IFDMA可以在子载波分配中获得与Ofdma相同的灵活性和粒度。对于用户请求到达并异步离开的异步方案,我们表明,IFDMA的阻塞概率仅比OFDMA的概率稍差:具体来说,在适度的提供负载下,IFDMA和OFDMA的阻止概率仅为2:56%。

Interleaved Frequency Division Multiple Access (IFDMA) and Orthogonal FDMA (OFDMA) belong to a class of signal modulation and multiple-access techniques in which information of multiple users are multiplexed and carried on subcarriers within a shared spectrum. Compared with OFDMA, IFDMA has lower Peak-to-Average Power Ratio (PAPR). However, IFDMA poses two rigid constraints on subcarrier allocation: 1) the subcarriers occupied by a user must be evenly-spaced among the available subcarriers. 2) the number of subcarriers used by a user must be a divisor of the total number of subcarriers. This paper investigates how to overcome these constraints to allow flexible and fine-grained subcarrier allocation in IFDMA. Specifically, we put forth 1) a bit-reversal subcarrier allocation scheme whereby the problem of allocating evenly-spaced subcarriers is transformed to a more intuitive problem of filling contiguous bins; 2) a multi-stream IFDMA scheme whereby a user can have an arbitrary number of subcarriers. For the synchronous scenario in which user requests arrive in a synchronous manner, we show that IFDMA can achieve the same level of flexibility and granularity as OFDMA in subcarrier allocation. For the asynchronous scenario in which user requests arrive and depart asynchronously, we show that the blocking probability of IFDMA is only slightly worse than that of OFDMA: specifically, the gap between the blocking probabilities of IFDMA and OFDMA is only 2:56% at a moderate offered load.

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