NB-IoT(narrow band internet of things,窄带物联网)作为中国移动面向未来IoT发展的主要技术,存在重叠覆盖严重、局部覆盖空洞多、室内深度覆盖不足等问题。提出了基于NB-IoT多业务复杂网络覆盖的评估和优化方法。根据NB-IoT四类业务...NB-IoT(narrow band internet of things,窄带物联网)作为中国移动面向未来IoT发展的主要技术,存在重叠覆盖严重、局部覆盖空洞多、室内深度覆盖不足等问题。提出了基于NB-IoT多业务复杂网络覆盖的评估和优化方法。根据NB-IoT四类业务的特征差异性,探究业务覆盖等级、执行重复次性和冗余作用等内容,通过大量测试和业务模拟、KPI、覆盖标准等三方面的深入研究,最终,在不同场所、不同问题对象上,实现了室内升级、共天馈优化、低成本NG分裂、终端延伸等的优化方案。研究结果为实现物联网低速率、低成本、低功耗、广深覆盖、大连接需求的NB-IoT奠定了基础。展开更多
In order to broaden the bandwidth of a tapered slot- line antenna (TSA), a bilateral tapered slot-line antenna (BTSA) with a new feeding structure of coplanar waveguide (CPW) is developed. Based on the fact that...In order to broaden the bandwidth of a tapered slot- line antenna (TSA), a bilateral tapered slot-line antenna (BTSA) with a new feeding structure of coplanar waveguide (CPW) is developed. Based on the fact that the bandwidth limitation of TSA mainly depends on its feeding structure, an improved CPW-based feed structure etched on the backboard of the BTSA is adopted to perform traveling-wave transition. Both the simulation results and measurement data verify that the proposed feeding structure results in "high-pass" frequency response for antenna impedance matching. The voltage standing wave ratio (VSWR) is less than 2:1 when the frequency is higher than 3 GHz. The antenna gain exceeds 7 dBi with good radiation patterns when the bandwidth is from 4 to 16 GHz. This ultra wideband (UWB) antenna with a compact size is specially available for the electronic systems of counter-measure and microwave imaging.展开更多
文摘NB-IoT(narrow band internet of things,窄带物联网)作为中国移动面向未来IoT发展的主要技术,存在重叠覆盖严重、局部覆盖空洞多、室内深度覆盖不足等问题。提出了基于NB-IoT多业务复杂网络覆盖的评估和优化方法。根据NB-IoT四类业务的特征差异性,探究业务覆盖等级、执行重复次性和冗余作用等内容,通过大量测试和业务模拟、KPI、覆盖标准等三方面的深入研究,最终,在不同场所、不同问题对象上,实现了室内升级、共天馈优化、低成本NG分裂、终端延伸等的优化方案。研究结果为实现物联网低速率、低成本、低功耗、广深覆盖、大连接需求的NB-IoT奠定了基础。
基金The National High Technology Research and Development Program of China(863 Program)(No.2007AA01Z264)
文摘In order to broaden the bandwidth of a tapered slot- line antenna (TSA), a bilateral tapered slot-line antenna (BTSA) with a new feeding structure of coplanar waveguide (CPW) is developed. Based on the fact that the bandwidth limitation of TSA mainly depends on its feeding structure, an improved CPW-based feed structure etched on the backboard of the BTSA is adopted to perform traveling-wave transition. Both the simulation results and measurement data verify that the proposed feeding structure results in "high-pass" frequency response for antenna impedance matching. The voltage standing wave ratio (VSWR) is less than 2:1 when the frequency is higher than 3 GHz. The antenna gain exceeds 7 dBi with good radiation patterns when the bandwidth is from 4 to 16 GHz. This ultra wideband (UWB) antenna with a compact size is specially available for the electronic systems of counter-measure and microwave imaging.