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Performance simulation of IEEE 802.16e WiMAX physical layer

机译:IEEE 802.16e WiMAX物理层的性能仿真

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Hardware implementation of WiMAX systems using field programmable gate array (FPGA) technology is a very important task for mobile communication and wireless network researchers. As a first step, a careful simulation of the system performance has been done using the simulation link platform of matlab_2009. The performance of the simulated system was evaluated using the bit-error-rate (BER). In this part; we have discussed different algorithms of the orthogonal frequency division multiplexing (OFDM), as well as the WiMAX physical layer based on the IEEE 802.16e standard under different combinations of digital modulation schemes and different communication channels. The simulation results show that adaptive modulation achieves similar spectral efficiency with better energy efficiency. When channel conditions are poor, energy efficient schemes such as BPSK or QPSK were used. As channel quality improves, higher M-ary modulation schemes such as16-QAM or 64-QAM was used.
机译:对于移动通信和无线网络研究人员而言,使用现场可编程门阵列(FPGA)技术对WiMAX系统进行硬件实现是一项非常重要的任务。第一步,已使用matlab_2009的仿真链接平台对系统性能进行了仔细的仿真。使用误码率(BER)评估了仿真系统的性能。在这一部分;我们讨论了在数字调制方案和不同通信信道的不同组合下,正交频分复用(OFDM)的不同算法以及基于IEEE 802.16e标准的WiMAX物理层。仿真结果表明,自适应调制实现了相似的频谱效率,但能量效率更高。当信道条件较差时,将使用诸如BPSK或QPSK之类的节能方案。随着信道质量的提高,使用了更高的Mary调制方案,例如16-QAM或64-QAM。

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