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Architectural Challenges for Multi-mode Small Cells for Indoor Coverage

机译:用于室内覆盖的多模小细胞的建筑挑战

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Achieving higher quality of service and improved indoor coverage have always been major challenges with increasing percentage of data traffic every year. For this purpose, integration of wireless technologies to assist in traffic handling has become a significant solution. This research focuses on designing a network infrastructure to meet high service demands through interworking of multiple wireless technologies. Third Generation Partnership Project (3GPP) has specified multiple protocols for an integration of LTE and WLAN including Core Network (CN) level and Radio Access Network (RAN) level interworking. This paper discusses different available approaches for an integration of LTE and WLAN as well as best suited protocols for indoor coverage and service enhancement. To avoid parallel deployment, network sharing mechanisms among multiple operators are also examined. An experimental platform for a LTE-WLAN integration based on OpenAirInterface (OAI) is configured. A simulation of a LTE and WLAN integrated architecture is also designed using Network Simulator 3 (NS3) for optimized traffic offloading algorithm development.
机译:实现更高质量的服务和改进的室内覆盖率始终是每年增加数据流量百分比的主要挑战。为此目的,无线技术的集成要帮助交通处理已成为一个重要的解决方案。本研究专注于设计网络基础设施,通过多种无线技术互通来满足高服务需求。第三代伙伴关系项目(3GPP)为LTE和WLAN集成了多种协议,包括核心网络(CN)级别和无线电接入网络(RAN)级互通。本文讨论了LTE和WLAN集成的不同方法以及最适合室内覆盖和服务增强的协议。为避免并行部署,还检查多个运营商之间的网络共享机制。配置了基于OpenAilInterface(OAI)的LTE-WLAN集成的实验平台。 LTE和WLAN集成架构的仿真也使用网络模拟器3(NS3)设计了用于优化的流量卸载算法开发。

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