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Enhanced Adaptive Modulation and Coding (AMC) Technique Using ILDPCA Coders for MEMO Systems

机译:使用ILDPCA编码器的MEMO系统增强型自适应调制和编码(AMC)技术

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AMC has been adopted at the physical layer of several standard e, g 3GPP, 3GPP2, HIPERLAN/2, IEEE802.Ha, IEEE 802.15.3 and IEEE 802.16. MIMO technology in coordination with Adaptive Modulation and Coding (AMC) scheme further enhances spectral efficiency by adjusting transmission parameters to the channel condition while satisfying a target error performance. Consequently, the combined MIMO-AMC technology is a promising solution to offer high throughput for next generation wireless systems. The system still has limitations in terms of channel estimation error, periodic performance drop, channel correlation resulting in reduced throughput and packet loss rate A cross layer design using Improved Low Density Parity Check Code (ILDPCA) in AMC on the physical layer and Incremental redundancy Hybrid ARQ (IR-HARQ) in the data link layer is proposed. ILDPCA coder in AMC enhances the performance of the system in terms of bit error rate,packet loss rate and spectral efficiency.
机译:AMC已在几种标准的物理层采用,例如3GPP,3GPP2,HIPERLAN / 2,IEEE802.Ha,IEEE 802.15.3和IEEE 802.16。与自适应调制和编码(AMC)方案配合使用的MIMO技术通过在满足目标差错性能的同时将传输参数调整到信道条件,从而进一步提高了频谱效率。因此,组合的MIMO-AMC技术是为下一代无线系统提供高吞吐量的有前途的解决方案。该系统在信道估计误差,周期性性能下降,信道相关性等方面仍然存在局限性,从而导致吞吐量和数据包丢失率降低。在物理层的AMC中使用改进的低密度奇偶校验码(ILDPCA)和增量冗余混合进行跨层设计。提出了数据链路层的ARQ(IR-HARQ)。 AMC中的ILDPCA编码器在误码率,分组丢失率和频谱效率方面提高了系统性能。

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