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Sub-carrier Switch Off in OFDM-Based Wireless Local Area Networks

机译:基于DM的无线局域网中的子载波关闭

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OFDM based wireless communication systems split the available frequency band into so-called sub-carriers, and data is transmitted on each of these sub-carriers in parallel. With frequency selective fading, sub-carriers may experience different channel qualities. Thus, choosing a different modulation and coding scheme (MCS) per sub-carrier improves performance. However, this comes at an increase in transceiver complexity and no current wireless system adapts the MCS at such a fine granularity. Some OFDMA based systems such as LTE allow to adapt the MCS per user, whereas wireless local area networks as specified by IEEE 802.11 use the same MCS on every sub-carrier. The performance of such wireless systems that use a single MCS in a frequency selective fading channel can be significantly improved through Sub-Carrier Switch Off (SSO), a simple but powerful alternative to adaptive MCS. SSO deactivates weak sub-carriers that excessively raise the error probability to improve the overall throughput. In this paper, we implement and test SSO in a software-defined radio testbed based on the Wireless Open Access Research Platform (WARP). We present a novel light-weight method for selecting the sub-carriers to be switched off based on the per-sub-carrier channel quality. The results we obtain from our measurements indicate that throughput increases of up to 250% are possible and thus SSO is a highly promising and very low complexity mechanism for future wireless local area networks.
机译:基于DM的无线通信系统将可用频带分成所谓的子载波,并且数据在每个子载波上并行地发送数据。利用频率选择性衰落,子载波可能经历不同的信道质量。因此,选择每个子载波的不同调制和编码方案(MCS)提高性能。然而,这达到了收发器复杂性的增加,并且没有电流无线系统在这种细粒度下适应MCS。基于MA的一些系统,例如LTE允许适应每个用户的MCS,而IEEE 802.11指定的无线局域网在每个子载体上使用相同的MC。通过子载波关闭(SSO)可以显着改善在频率选择性衰落信道中使用单个MCS的这种无线系统的性能,这是自适应MCS的简单但强大的替代方案。 SSO停用过度提高误差概率以提高整体吞吐量的弱子运营商。在本文中,我们在基于无线开放访问研究平台(经编)的软件定义的无线电测试中实现和测试SSO。我们提出了一种用于选择基于每个子载波信道质量关闭的子载波的新型轻量级方法。我们从测量中获得的结果表明,最高可达250%的吞吐量增加,因此SSO是未来无线局域网的高度有前途和非常低的复杂机制。

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