Fifth generation (5G) and beyond communication systems open the door to millimeter Wave (mmWave) frequency bands to leverage the extremely large operating bandwidths and deliver unprecedented network capacity. These frequency bands are affected by high propagation losses that severely limit the achievable coverage. The simplest way to address this problem would be to increase the number of installed mmWave base stations (BSs), at the same time augmenting the overall network cost, power consumption and ElectroMagnetic Field (EMF) levels. As alternative direction, here we propose to complement the macro-layer of mmWave BSs with a heterogeneous deployment of Smart Electromagnetic (Smart EM) Entities - namely IAB nodes, Smart Repeaters, Reconfigurable Intelligent Surfaces (RISs) and passive surfaces - that is judiciously planned to minimize the total installation costs while at the same time optimizing the network spectral efficiency. Initial network planning results underline the effectiveness of the proposed approach. The available technologies and the key research directions for achieving this view are thoroughly discussed by accounting for issues ranging from system-level design to the development of new materials.
翻译:第五代(5G)和通信系统以外的第五代(5G)和通信系统打开通向千兆瓦(mmWave)频带的大门,以利用极为庞大的操作带宽,提供前所未有的网络能力。这些频带受到高度传播损失的影响,严重限制了可实现的覆盖范围。解决这一问题的最简单办法是增加已安装的毫米Wave基站的数量,同时提高整个网络成本、电耗和电磁场水平。作为替代方向,我们提议对毫米Wave BS的宏观层面进行补充,同时部署智能电磁实体(SmartEM),即IAB节点、智能重复器、可配置的智能表面(RIS)和被动表面,这是明智的计划,目的是尽量减少安装总成本,同时优化网络光谱效率。初步网络规划结果强调了拟议方法的有效性。通过对从系统层面设计到开发新材料的问题进行核算,对现有技术和实现这一观点的关键研究方向进行了透彻的讨论。