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Interference Analysis and Power Allocation in the Presence of Mixed Numerologies

机译:混合数学存在下的干扰分析和功率分配

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The flexibility in supporting heterogeneous services with vastly different technical requirements is one of the distinguishing characteristics of the fifth generation (5G) communication systems and beyond. One viable solution is to divide the system bandwidth into several bandwidth parts (BWPs), each having a distinct numerology optimized for a particular service. However, multiplexing of mixed numerologies over a unified physical infrastructure comes at the cost of induced interference. In this paper, we develop an analytical system model for inter-numerology interference (InterNI) analysis in orthogonal frequency-division multiplexing (OFDM) systems with and without filter processing in the presence of mixed numerologies. With the analytical model, the level of InterNI is quantified by the developed analytical metric, which is expressed as a function of several system parameters. This leads to an analysis and evaluation of these parameters for meeting a given distortion target. Moreover, a case study on power allocation utilizing the derived analysis is presented, where an optimization problem of maximizing the sum rate is formulated, and a solution is also provided. It is also demonstrated that a filtered-OFDM system better accommodates the coexistence of mixed numerologies. The proposed model provides an accurate analytical guidance for the multi-service design in 5G and beyond systems.
机译:支持异构服务的灵活性具有极大不同的技术要求是第五代(5G)通信系统及更远的区别特征之一。一个可行的解决方案是将系统带宽分成几个带宽部分(BWPS),每个带宽部分(BWP)都具有针对特定服务优化的不同数字。然而,在统一的物理基础设施上,混合使用数量的多路复用来自诱导干扰的成本。在本文中,我们在混合配学存在下,在正交频分复用(OFDM)系统中,在正交频分复用(OFDM)系统中的分析系统模型进行了分析系统模型。通过分析模型,通过开发的分析度量量化Interni的水平,其表示为若干系统参数的函数。这导致对满足给定失真目标的这些参数的分析和评估。此外,介绍了利用导出分析的功率分配的案例研究,其中制定了最大化总和速率的优化问题,还提供了解决方案。还证明了过滤器-OFDM系统更好地适应混合数学的共存。该拟议的模型为5G和超出系统中的多服务设计提供了准确的分析指导。

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