基于V-BLAST检测的卷积码编码器和维特比解码器MIMO系统单射频前端性能分析

Dwi Evita Febrianti Irfat, I. G. Puja Astawa, Aries Pratiarso
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引用次数: 0

摘要

多输入多输出(MIMO)和正交频分复用(OFDM)技术的融合是无线通信系统对高数据速率的快速增长需求的原因。MIMO-OFDM技术在每个天线中都需要射频前端,这对于大尺寸天线尺寸来说效果不佳。因此,接收机端的射频前端将使用基于电导向寄生阵列散热器(ESPAR)天线的单一射频技术进行简化。在现实生活中,一个频道不可能是理想的。因此,在信号传输之前,必须对该信号进行编码,使数据传输过程中的误差降到最低。卷积码是一种能够检测和纠正错误比特的编码技术(错误控制编码),它有望降低误码率(BER)的数量。在本研究中,利用垂直贝尔实验室时空(VBLAST)检测卷积码编码器和维特比解码器,设计仿真分析MIMO-OFDM系统的单射频性能。仿真结果表明,信道估计技术在单射频MIMO-OFDM系统上效果良好,理论信道与估计信道的子载波指数的幅值曲线和相位曲线几乎处于同一点。VBLAST-ZF探测器的性能表现在信噪比的误码曲线中,当信噪比为10 dB时,理论信道与估计信道的误码差值为0.001499。使用卷积码编码器和Viterbi解码器的信道编码技术在使用单个射频的MIMO-OFDM系统上工作良好,其在信噪比的误码率曲线中显示,其中使用编码技术的误码率值小于不使用编码技术的误码率值。
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Analyze of Single RF Front End Performance on MIMO System using V-BLAST Detection for Convolutional Code Encoder and Viterbi Decoder
Rapidly growing demand for high data rates in wireless communication systems is the cause of the merging of Multiple Input Multiple Output (MIMO) and Orthogonal Frequency Division Multiplexing (OFDM) techniques. MIMO-OFDM technique needs Radio Frequency (RF) front end in each antenna, which is not effective for large dimensional antenna size. Therefore, RF front end on the receiver side will be simplified using a single RF technique based on the Electrically Steerable Parasitic Array Radiator (ESPAR) antenna. In real life, a channel cannot be ideal. Therefore, before the signal is transmitted, that signal must be coded to minimized errors when the data transmission process. Convolutional code is a coding technique that can detect and correct error bit (error control coding) and that it is expected to reduce the quantity of Bit Error Rate (BER). In this research, a simulation is designed to analyze single RF performance on the MIMO-OFDM system using Vertical Bell Laboratories Space-Time (VBLAST) detection for convolutional code encoder and Viterbi decoder. The result simulation shows that the channel estimation technique works well on the MIMO-OFDM system using single RF, which is shown in the magnitude and phase curves against the subcarrier index between the theory channel and the estimated channel are at almost the same points. VBLAST-ZF detector performance is shown in the BER curve against SNR, where the difference BER value for SNR value 10 dB between the theory channel and the estimated channel is 0.001499. Channel coding technique using convolutional code encoder and Viterbi decoder with a rate of ½ works well on the MIMO-OFDM system using single RF which is shown in the BER curve against SNR, where BER value with coding technique is smaller than BER value without coding technique.
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