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Keynote talk 3: From basics to advanced modelling and simulation techniques for mobile radio channels

机译:主题演讲3:从基础知识到移动无线电信道的高级建模和仿真技术

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From the earliest beginnings of mobile communications to the present time, there has always been a high demand for realistic mobile radio channel models. This demand is driven by the fact that channel models are indispensable for the performance evaluation, parameter optimisation, and test of mobile communication systems. Channel modelling and simulation techniques are therefore of great importance for electronics and telecommunication engineers who are involved in the development of present and future mobile communication systems. This presentation will start with a review of the basic principles of mobile radio channel modelling and gradually moves to more advanced modelling and simulation techniques. The objective is to provide an overview on commonly used design methodologies enabling the development of channel models for present and future wireless communication systems. All presented channel models have in common that they are derived from a superposition of a finite number of complex sinusoids. However, the design methodologies differ in the way of computing the model parameters determining the statistical behaviour of the channel model. It will be shown that the proposed channel models are widely flexible, which enables an excellent fitting of their principal statistical properties against measurement data of real-world channels or against the statistics of specified reference channel models. Special interest will be paid to the presentation of cutting-edge research on the modelling of mobile-to-mobile MIMO channels, vehicle-to-vehicle MIMO channels, and mobile channels for relay-based cooperative networks. In addition, techniques will be presented for the development of measurement-based mobile radio channel models. The statistical properties of the channel models will be investigated with emphasis on the distribution of the received envelope as well as with respect to the channels' correlation properties in the space, time, and frequency domains. The obta--ined results show that the statistical properties of the channel models required for future mobile communication systems are quite different from the statistics of the channel models used in present mobile communication systems. The presentation closes with a discussion of open research problems in the area.
机译:从移动通信的最早开始到现在,一直对现实的移动无线电信道模型有很高的要求。信道模型对于移动通信系统的性能评估,参数优化和测试必不可少,这一事实推动了这一需求。因此,对于参与当前和未来移动通信系统开发的电子和电信工程师来说,信道建模和仿真技术至关重要。本演讲将首先回顾移动无线电信道建模的基本原理,然后逐步转向更高级的建模和仿真技术。目的是提供关于通用设计方法的概述,该方法能够为当前和未来的无线通信系统开发信道模型。所有呈现的通道模型的共同点是它们是从有限数量的复杂正弦曲线的叠加中得出的。但是,设计方法在计算确定通道模型的统计行为的模型参数的方式方面有所不同。可以看出,所提出的信道模型具有很大的灵活性,这使得它们的主要统计特性能够与真实信道的测量数据或特定参考信道模型的统计数据完美地拟合。将特别关注有关移动对移动MIMO信道,车辆对车辆MIMO信道以及基于中继的协作网络的移动信道建模的前沿研究的介绍。另外,将提出用于开发基于测量的移动无线电信道模型的技术。将研究信道模型的统计属性,重点是接收包络的分布以及空间,时间和频域中信道的相关属性。的obta- -- 结果表明,未来移动通信系统所需的信道模型的统计特性与当前移动通信系统中使用的信道模型的统计特性有很大不同。演讲结束时讨论了该地区的开放研究问题。

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