Recently, Tavakoli et al.proposed a self-testing scheme in the prepare-and-measure scenario, showing that self-testing is not necessarily based on entanglement and violation of a Bell inequality [Phys.Rev.A 98 062307(...Recently, Tavakoli et al.proposed a self-testing scheme in the prepare-and-measure scenario, showing that self-testing is not necessarily based on entanglement and violation of a Bell inequality [Phys.Rev.A 98 062307(2018)].They realized the self-testing of preparations and measurements in an N → 1(N ≥ 2) random access code(RAC), and provided robustness bounds in a 2 → 1 RAC.Since all N → 1 RACs with shared randomness are combinations of 2 → 1 and 3 → 1 RACs, the3 → 1 RAC is just as important as the 2 → 1 RAC.In this paper, we find a set of preparations and measurements in the3 → 1 RAC, and use them to complete the robustness self-testing analysis in the prepare-and-measure scenario.The method is robust to small but inevitable experimental errors.展开更多
多接入边缘计算(Multi-access Edge Computing,MEC)技术是第五代移动通信技术(5th Generation Mobile Communication Technology,5G)的关键技术之一,其主要特点是将资源迁移部署至网络边缘,从而实现内容、应用及服务的本地化部署。通过...多接入边缘计算(Multi-access Edge Computing,MEC)技术是第五代移动通信技术(5th Generation Mobile Communication Technology,5G)的关键技术之一,其主要特点是将资源迁移部署至网络边缘,从而实现内容、应用及服务的本地化部署。通过在无线电接入网(Radio Access Network,RAN)边缘处部署高性能的MEC服务器,可有效提高任务执行效率,满足用户任务严格时延需求。5G多接入边缘计算可以为满足不同行业应用的差异化业务需求提供便利,受到垂直行业用户的广泛关注。以5G技术和多接入边缘计算技术为核心,以5G为背景,探索在5G网络中多接入边缘计算技术的应用场景与部署方案。展开更多
为了提升下一代无线局域网(wireless local area network,WLAN)高密集场景下的区域吞吐量,正交频分多址接入(orthogonal frequency division multiple access,OFDMA)作为关键技术之一已被下一代WLAN通信标准采纳。然而,现有研究所提出的...为了提升下一代无线局域网(wireless local area network,WLAN)高密集场景下的区域吞吐量,正交频分多址接入(orthogonal frequency division multiple access,OFDMA)作为关键技术之一已被下一代WLAN通信标准采纳。然而,现有研究所提出的OFDMA多址接入技术均存在传输干扰扩散问题,即多个并行接入的节点位于位置分散的区域,从而对周边的传输干扰面积加大。提出一种空间聚集群组的OFDMA多址接入协议,空间位置接近的节点构成空间聚集群组,该协议使得空间聚集群组内的节点采用OFDMA的方式并行接入和传输,从而降低多个节点同时传输时的干扰范围,进而提升区域吞吐量。此外,根据网络仿真软件得出的结果,进行理论推导,理论分析与仿真结果相吻合。仿真结果表明,当小区节点数为100时,所提出协议的区域吞吐量比已有OFDMA协议和分布式协调功能协议分别提升15.98%和31.26%。为设计下一代WLAN媒体接入控制协议提供参考。展开更多
基金Project supported by the National Natural Science Foundation of China(Grant Nos.61572081,61672110,and 61671082)
文摘Recently, Tavakoli et al.proposed a self-testing scheme in the prepare-and-measure scenario, showing that self-testing is not necessarily based on entanglement and violation of a Bell inequality [Phys.Rev.A 98 062307(2018)].They realized the self-testing of preparations and measurements in an N → 1(N ≥ 2) random access code(RAC), and provided robustness bounds in a 2 → 1 RAC.Since all N → 1 RACs with shared randomness are combinations of 2 → 1 and 3 → 1 RACs, the3 → 1 RAC is just as important as the 2 → 1 RAC.In this paper, we find a set of preparations and measurements in the3 → 1 RAC, and use them to complete the robustness self-testing analysis in the prepare-and-measure scenario.The method is robust to small but inevitable experimental errors.
文摘多接入边缘计算(Multi-access Edge Computing,MEC)技术是第五代移动通信技术(5th Generation Mobile Communication Technology,5G)的关键技术之一,其主要特点是将资源迁移部署至网络边缘,从而实现内容、应用及服务的本地化部署。通过在无线电接入网(Radio Access Network,RAN)边缘处部署高性能的MEC服务器,可有效提高任务执行效率,满足用户任务严格时延需求。5G多接入边缘计算可以为满足不同行业应用的差异化业务需求提供便利,受到垂直行业用户的广泛关注。以5G技术和多接入边缘计算技术为核心,以5G为背景,探索在5G网络中多接入边缘计算技术的应用场景与部署方案。
文摘为了提升下一代无线局域网(wireless local area network,WLAN)高密集场景下的区域吞吐量,正交频分多址接入(orthogonal frequency division multiple access,OFDMA)作为关键技术之一已被下一代WLAN通信标准采纳。然而,现有研究所提出的OFDMA多址接入技术均存在传输干扰扩散问题,即多个并行接入的节点位于位置分散的区域,从而对周边的传输干扰面积加大。提出一种空间聚集群组的OFDMA多址接入协议,空间位置接近的节点构成空间聚集群组,该协议使得空间聚集群组内的节点采用OFDMA的方式并行接入和传输,从而降低多个节点同时传输时的干扰范围,进而提升区域吞吐量。此外,根据网络仿真软件得出的结果,进行理论推导,理论分析与仿真结果相吻合。仿真结果表明,当小区节点数为100时,所提出协议的区域吞吐量比已有OFDMA协议和分布式协调功能协议分别提升15.98%和31.26%。为设计下一代WLAN媒体接入控制协议提供参考。