A Coherent Hybrid Precoding for homogenize Millimeter-wave Multiple- in Multiple- out Systems for 5G Communication

B. R. Devi, Babburu Kiranmai, K. Gurucharan, S. Kiran, P. Srujana
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引用次数: 3

Abstract

In the present scenario, most of the communication systems depend upon MU-Millimeter Waves. A high gain beamforming has been achieved by using millimeter wave communication system. A group of antennas used at transmitter and receiver-end for providing better throughput and efficiency is called massive multiple input multiple-output (MIMO). By using this technique, a better spectral efficiency, throughput, power efficiency and also low bit error rates can be achieved when it is used along with the fifth generation mobile networks. Multiple number of antennas are used at the transmitter and receiver end instead of single antenna. The interference and multipath propagation problems are the major disadvantages in communication systems, which can be resolved in this technique. Through multiple antennas transmission of data is done as it is taking multiple different paths because of obstacles in the environment to make the system more efficient at the receiver antenna the best received signal is processed. To overcome signaling overhead complexity efficient signal processing techniques have to be used at both the ends. To resolve path loss MIMO is furnished with millimeter wave bands. To achieve high spectral efficiencies which requires less cost and to consume low power precoding of hybrid analog/digital is used. At transmitter end and receiver end large antenna arrays are deployed to provide required signal power which makes the architecture for millimeter-wave systems more complex. Hybrid precoding is an attractive architecture for millimeter-wave systems. It focuses on narrowband channels. A union of digital and analog precoding which is a hybrid precoding is preferred to achieve less complexity and better performance. To take the advantage of beam forming gain and spatial multiplexing in millimeter wave system hybrid precoding is exploited for more frequency chain. An inter user interference is nullified at analog step. The transmitting data rate is maximized at digital step. The proposed work, Hybrid Precoding is preferred is to estimate digital precoding for eliminating inter-user interference basing on solving convex optimization problem. By using more base station antennas more directive gain can be distributed to large number of users. Bit error rate and spectral efficiency is improved for 100 paths.
5G通信中均匀毫米波多进多出系统的相干混合预编码
在目前的情况下,大多数通信系统依赖于毫米波。利用毫米波通信系统实现了高增益波束形成。为了提供更好的吞吐量和效率,在发送端和接收端使用的一组天线被称为大规模多输入多输出(MIMO)。当与第五代移动网络一起使用时,可以实现更好的频谱效率、吞吐量、功率效率和低误码率。在发送端和接收端使用多个天线,而不是单个天线。干扰和多径传播问题是当前通信系统的主要缺点,该技术可以很好地解决这些问题。由于环境中存在障碍物,数据传输采用多条不同路径,通过多天线进行传输,使系统在接收天线处效率更高,对接收到的信号进行最佳处理。为了克服信号开销的复杂性,必须在两端使用高效的信号处理技术。为了解决路径损耗,MIMO配备了毫米波波段。为了实现低成本、低功耗的高频谱效率,采用了模拟/数字混合预编码。在发射端和接收端部署大型天线阵列以提供所需的信号功率,这使得毫米波系统的结构更加复杂。混合预编码是一种很有吸引力的毫米波系统架构。它侧重于窄带信道。数字与模拟相结合的预编码是一种混合预编码,以达到更低的复杂度和更好的性能。为了充分利用毫米波系统的波束形成增益和空间复用特性,采用混合预编码技术实现更多的频链。在模拟步骤中消除用户间干扰。在数字步长上最大限度地提高传输数据速率。混合预编码是在求解凸优化问题的基础上估计消除用户间干扰的数字预编码。通过使用更多的基站天线,可以将更多的定向增益分配给大量用户。提高了100条路径的误码率和频谱效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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