Difference between revisions of "F1-5G and Future Networks"

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=⌘ F1-Future Networks =
 
{{Building Networks TOC}}  
 
{{Building Networks TOC}}  
= F1-Future Networks =
 
  
  
= 5G Heterogeneous Networks =
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=5G Heterogeneous Networks =
  
 
Presentation: Josef Noll, [[Media:201010-Femtocell-Project.pdf|From coverage to quality: building the future network]], Femtocells - Building the Quality Network for Mobile Operations - Oslo, 28 Oct 2010

 
Presentation: Josef Noll, [[Media:201010-Femtocell-Project.pdf|From coverage to quality: building the future network]], Femtocells - Building the Quality Network for Mobile Operations - Oslo, 28 Oct 2010

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Ayaz Khan Afridi, "[[Media:2011-Macro_and_Femto_MasterThesis.pdf|Macro and Femto Network Aspects in Realistic LTE Usage Scenarios]]", Master Thesis, Network Services and System in Department of Electrical Engineering, Royal Institute of Technology (KTH), Stockholm, Sweden, May 2011.
 
Ayaz Khan Afridi, "[[Media:2011-Macro_and_Femto_MasterThesis.pdf|Macro and Femto Network Aspects in Realistic LTE Usage Scenarios]]", Master Thesis, Network Services and System in Department of Electrical Engineering, Royal Institute of Technology (KTH), Stockholm, Sweden, May 2011.
  
= Basic Internet =
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=Basic Internet =
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Presentation: [[Media:201611_BasicInternet_India_v1.pdf|Business perspective for India based on Basic Internet (.pdf)]]
  
= Video Distribution Networks =
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=⌘ Calculations =
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Establish the link budget and the capacity using a simplified model for
 +
:a) a coverage area of 100 km, using 2G technology at 900 MHz and the models from
 +
:b)
 +
=⌘ Video Distribution Networks =
 
Idea originated by [[Kjetil Kjernsmo]] in [[UNIK4710]], and presented at [http://folk.uio.no/kjekje/projects/orienteering/byodnfyor.html]
 
Idea originated by [[Kjetil Kjernsmo]] in [[UNIK4710]], and presented at [http://folk.uio.no/kjekje/projects/orienteering/byodnfyor.html]

Revision as of 21:48, 31 October 2016

⌘ F1-Future Networks

Building .... Networks
History, Now and Future
History
Pioneers: Maxwell, Hertz,...
1G, 2G,... 5G networks
Frequencies and Standards
Future Challenges
A-Basics of Communication
Electromagnetic Signals
Radio Communication Principles
Digital communication: Signal/Noise Ratio
Signal strength and Capacity: Shannon
B-Antennas and Propagation
Free Space Propagation
Antennas, Gain, Radiation Pattern
Multipath Propagation, Reflection, Diffraction
Attenuation, Scattering
Interference and Fading (Rayleigh, Rician, …)
Mobile Communication dependencies
C-Propagation models
Environments (indoor, outdoor to indoor, vehicular)
Outdoor (Lee, Okumura, Hata, COST231 models)
Indoor (One-slope, multiwall, linear attenuation)
D-System Comparison
Proximity: RFID, NFC
Short Range: ZigBee, Bluetooth, ANT+,...
WLAN/Wifi/802.11...
Mobile: GSM, UMTS, IMT-A (WiMAX, LTE)
E-Mobility
Mobile Network mobility
IP mobility
F-Network Building
5G and Future Networks
5G Heterogeneous Networks
Basic Internet
Video Distribution Networks
Coverage simulations
Coverage simulations
Traffic simulations
Network Capacity simulations
Building .... Networks


⌘ 5G Heterogeneous Networks

Presentation: Josef Noll, From coverage to quality: building the future network, Femtocells - Building the Quality Network for Mobile Operations - Oslo, 28 Oct 2010



Ayaz Khan Afridi, "Macro and Femto Network Aspects in Realistic LTE Usage Scenarios", Master Thesis, Network Services and System in Department of Electrical Engineering, Royal Institute of Technology (KTH), Stockholm, Sweden, May 2011.

⌘ Basic Internet

Presentation: Business perspective for India based on Basic Internet (.pdf)

⌘ Calculations

Establish the link budget and the capacity using a simplified model for

a) a coverage area of 100 km, using 2G technology at 900 MHz and the models from
b)

⌘ Video Distribution Networks

Idea originated by Kjetil Kjernsmo in UNIK4710, and presented at [1]