基于DNN和DLS算法的NOMA-MIMO网络中各种功率分配算法的比较分析

Ravi Mancharla, Y. Bulo
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引用次数: 2

摘要

高数据速率、高频谱效率、连续干扰消除(SIC)和超可靠低延迟(URLL)是下一代技术的需求。非正交多址(NOMA)方案具有多用户可扩展(multiplexing)、最佳频谱效率(SE)、出色的用户配对改进和多用户共享单个资源块等优点,是下一代技术中比正交多址(OMA)方案更可取的方案。本文对MIMO-NOMA技术中各种功率分配算法进行了比较分析,提出了最适合MIMO-NOMA技术的最佳功率分配算法。首先,将考虑直接方法进行比较分析,然后使用深度神经网络(DNN)和深度限制搜索(DLS)算法进行功率分配算法。这些技术首先在两个用户上进行测试,然后进行多用户通信。对信号强度较差的用户终端(用户接收不到合适的信号功率)分配最优功率在实际场景中是一项困难的任务,而且SIC也给基站(BS)源功率的合理分配带来了复杂性。上述问题可以借助DNN和DLS算法来解决,其中较弱的用户获得最大功率,较强的用户获得最小功率。基于DLS算法的DNN-MIMO-NOMA技术可以帮助用户终端获得无噪声(用户间干扰)和更高精度的信号。DLS过程(算法)为MIMO-NOMA与DNN技术的成功应用提供了更高的潜力。在这里,MIMO有助于提高信道增益。DLS可根据用户设备的位置提供最优的OPA (power allocation)。仿真结果表明,将深度神经网络与DLS算法相结合的功率分配方法比传统的多用户分配方法具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comparative Analysis of the various Power Allocation Algorithm in NOMA-MIMO Network Using DNN and DLS Algorithm
The high data rate, huge spectrum efficiency, successive interference cancellation (SIC), and ultra-reliable low latency (URLL) are of the demand for next-generation technologies. Non-orthogonal multiple access (NOMA) scheme provides multi-user scaling (multiplexing), optimum spectral efficiency (SE), excellent user-pairing improvement, and a single resource block sharing by multiple users because of which it is a more preferable scheme over orthogonal multiple access (OMA) for the next generation technologies. This article investigates comparative analysis of various power allocation algorithms in multiple-input multiple-output-NOMA (MIMO-NOMA) technology and to come up with the best power allocation algorithm which suited best for MIMO-NOMA technology. Firstly, comparison analysis will be carried out considering direct methodologies followed by power allocation algorithm using Deep Neural Network (DNN) along with the Depth limited search (DLS) algorithm. These techniques are tested on two users initially then followed by multi-user communication. Allocating optimal power to the poor signal strength user terminal (user not receiving appropriate signal power) is a difficult task in actual scenario, and moreover, SIC also creates complexity in the proper allocation of Base station (BS) source power. The above problems can be solved with the assistance of the DNN along with the DLS algorithm, where the weaker user receives maximum power and the stronger user receives minimum power. The DNN-MIMO-NOMA technology, which is based on the DLS algorithm, helps user terminals to get their signals free from noise (inter_user_interference) and with greater precision. The DLS process (algorithm) offers higher potential in MIMO-NOMA with DNN technology for successfully applying SIC. Here, MIMO helps to improve the channel gain. A DLS provides an optimum power allocation (OPA) based on the position of user equipment. The simulation results show that the power allocation method using DNN along with DLS algorithm achieves better performance than the traditional multi-user.
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