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AGGRESSIVE MODULATION/CODING SCHEME SELECTION FOR MAXIMIZING SYSTEM THROUGHPUT IN A MULTI-CARRIER SYSTEM

机译:用于在多载波系统中最大化系统吞吐量的积极调制/编码方案选择

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Multi-carrier modulation techniques, such as OFDM, are attractive propositions for the design of future broadband wireless communication systems due to higher spectral efficiency than CDMA. A capacity enhancing technique to be commonly used in these systems is Adaptive Modulation/Coding (AMC) for link adaptation. With AMC, the Modulation and Coding Scheme (MCS) is selected based on the channel quality information. MCS selection is an imperfect process by nature, due to, for example, the variability of the channel. Moreover, since the set of available MCSs is quantized, it is not always possible to select the optimal rate. Using these non-optimal MCS values will result in reduced system capacity. This paper describes a method that attempts to maximize system and user throughputs in a multi-carrier system by overcoming the impacts of such non-optimal MCS selection through the use of hybrid ARQ (HARQ). This method relies on aggressive MCS selection and multiple HARQ transmissions. The performance impact of this method on various types of packet data applications is evaluated by system level simulation. Simulation results indicate that significant system and user throughput gains can be achieved by this method.
机译:诸如OFDM的多载波调制技术是由于比CDMA更高的光谱效率,对未来宽带无线通信系统的设计具有吸引人的主张。在这些系统中常用的容量增强技术是用于链接适应的自适应调制/编码(AMC)。利用AMC,基于信道质量信息选择调制和编码方案(MCS)。 MCS选择是自然的不完美过程,例如,由于频道的可变性。此外,由于量化了可用MCS的集合,因此并不总是可以选择最佳速率。使用这些非最佳MCS值将导致系统容量减小。本文介绍了一种尝试通过使用混合ARQ(HARQ)来最大限度地通过克服这些非最佳MCS选择的影响来最大化多载波系统中的系统和用户吞吐量。该方法依赖于攻击MCS选择和多个HARQ传输。通过系统级仿真评估此方法对各种类型的数据包数据应用的性能影响。仿真结果表明,通过该方法可以实现显着的系统和用户吞吐量增益。

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