基于1/3卷积码的单射频MIMO V-BLAST检测性能

Happy Yaumil Fitri Rozaana, I. Gede Puja Astawa, Arifin
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引用次数: 0

摘要

MIMO技术是无线通信领域所需要的,它在发射端和接收端充当一对天线,在多径组件上工作。MIMO系统设计能够最大限度地提高数据速率,以支持数据流并提高整体系统可靠性。因此,该技术可以实现可靠、快速、高效的数据通信。然而,MIMO的缺点是在接收端使用天线需要一个与天线数量一样大的射频前端。所以,对于一个大尺寸的天线,它是无效的。因此,接收机端的射频前端需要一种单一的射频技术,根据需要设置天线数量,以尽量减少射频前端的数量。在本研究中,采用V-BLAST检测技术对MIMO系统接收端单射频技术的性能进行了仿真分析。V-BLAST是一种信道编码技术,用于在大型和快速数据传输过程中最大限度地减少错误。因此,该技术旨在降低误码率的数量。要使用的天线基于单个射频具有2x2尺寸。将使用的调制是64- QAM,使用1/3速率卷积编码器代码。本研究的结果是通过在MIMO系统中使用V-BLAST技术来提高性能并最小化射频前端,其中观察到的参数是误码率(BER)与信噪比(SNR)的比较,这将在误码率对信噪比曲线中显示。
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MIMO V-BLAST Detection Performances on Single RF Using Convolutional Code with Rate of 1/3
MIMO technology is needed in the world of wireless communication (wireless) which acts as a pair of antennas on the transmitter and receiver sides that work on multipath components. The MIMO system design is able to maximize data rates to support data flow and improve overall system reliability. So, it is concluded that this technology has access to data communication that is reliable, fast, and efficient in bandwidth usage. However, the disadvantage of MIMO is that any use of an antenna on the receiver side requires a RF front-end that is as large as the number of antennas. So, for a large size antenna, it is not effective. Therefore, RF front-end on the receiver side requires a single RF technique with the number of antennas as needed that aims to minimize the number of RF front-end. In this research, a simulation is carried out to analyze the performance of the single RF technique at the receiver side of the MIMO system using V-BLAST detection technique. V-BLAST is a channel coding technique that is used to minimize errors during large and fast data transmission processes. So, this technique aims to reduce the quantity of the Bit Error Rate (BER). The antenna to be used has a 2x2 dimension based on a single RF. The modulation that will be used is 64- QAM by using a 1/3 rate convolution encoder code. The results obtained by this research are improving performance and minimizing RF front-end by using the V-BLAST technique in the MIMO system where the observed parameters are the comparison of Bit Error Rate (BER) to Signal to Noise Ratio (SNR) which will be shown in the BER towards SNR curve.
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