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Adaptive Channel Coding and Modulation Scheme Selection for Achieving High Throughput in Wireless Networks

机译:实现无线网络中高吞吐量的自适应信道编码和调制方案选择

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Modern wireless communication demands reliable data communication at high throughput in severe channel conditions like narrowband interference, frequency selective fading due to multipath and attenuation of high frequencies. Traditional single carrier systems address this set of problems by the use of complex, computationally intensive equalization filters. The Orthogonal Frequency Division Multiplexing (OFDM) based system, as opposed to single-carrier systems, is considered to be the future of the wireless communication and is being used to achieve high data rate by overcoming severe channel conditions without the use of these complex filters. This paper discusses the problem of Adaptive Modulation scheme selection through an OFDM based system over parallel frequency selective fading channels. An adaptive coding scheme is proposed by using Generalized Concatenated Codes (GCC), which have simple structure and are designed in such a way that they are best suited for fading channels. GCC are based on binary cyclic codes. The criterion of the proposed research is to optimize the throughput of a wireless system. Depending on the quality of sub-channels an adaptive modulation selection scheme and code assigning method is proposed. The proposed research combats against channel impairments better than those used in conventional systems by exploiting individual sub-channel condition. Results show better performance in terms of higher throughput by minimizing the bit error rate.
机译:现代无线通信要求在严苛的信道条件下以高吞吐量进行可靠的数据通信,例如窄带干扰,由于多径导致的频率选择性衰落以及高频衰减。传统的单载波系统通过使用复杂的,计算量大的均衡滤波器来解决这组问题。与单载波系统相反,基于正交频分复用(OFDM)的系统被认为是无线通信的未来,并且通过克服严峻的信道条件而无需使用这些复杂的滤波器就可以实现高数据速率。本文讨论了在并行频率选择性衰落信道上通过基于OFDM的系统进行自适应调制方案选择的问题。通过使用通用级联码(GCC)提出了一种自适应编码方案,该方案具有简单的结构,并且以最适合衰落信道的方式进行设计。 GCC基于二进制循环码。提出的研究的标准是优化无线系统的吞吐量。根据子信道的质量,提出了一种自适应调制选择方案和代码分配方法。拟议的研究通过利用单个子信道条件,比常规系统中更好地抗击信道损伤。结果通过最小化误码率显示了更高吞吐量方面的更好性能。

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