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wsnmg
- 定位技术是无线传感器网络中关键的基础支撑技术, 目前提出了许多静态网络的节点定位算 法, 移动无线传感器网络的定位研究相对较少. 针对定位节点和参考节点随机运动的网络模型, 提出了 一个基于动态网格划分的蒙特卡罗定位算法. 算法中当接收的参考节点数超过一定阈值时使用最远距 离节点选择模型, 选出部分参考节点参与定位和信息转发, 节约能耗. 接着基于选择的或所有接收的参 考节点构建采样区域, 进行网格划分, 使用网格单元数计算最大采样次数, 在采样区域内采样并使用误 差补偿的运
The-Path-to-4G-LTE-and-LTE-Advanced
- LTE & LTE-Advanced coupled with small cells & relays will address these fast growing wireless data capacity demands
B_Maso_Marco_These_VF
- Flexible Cognitive Small-cells for Next Generation Two-tiered Networks. thesis of Marco Maso
A-benifit-of-adding-cells-not-exist-always-2014.r
- Indoor TD-LTE Small Cell Deployment Study: Benefit of Adding Cells is Not Always Existing
Massive-MIMO--
- Massive MIMO and Small Cells -Massive MIMO and Small Cells
Boosting-Capacity-Through-Small-Cell
- Boosting capacity through small cells
Interference-Coordination-Schemes
- This paper is a survey upon the evolution of interference mitigation solutions Release 8 to Release 11. This problem was addressed since earlier releases by coordinating transmission/reception among different cells. Many enhancements were then carri
sim_smallcells
- Simulation of Small Cells in LTE.
Comparison-of-Wavelength-Routed
- New optical access technologies allow network operators to cope with larger client count and longer access distances, as well as to deliver larger bandwidth. This paper focuses on next generation optical access network architectures using Wavelen
maximal-EE-master
- Simulation code for “Deploying Dense Networks for Maximal Energy Efficiency: Small Cells Meet Massive MIMO” by Emil Bjö rnson, Luca Sanguinetti, Marios Kountouris, To appear in IEEE Journal on Selected Areas in Communications http://www.commsys.i