Average monthly mobile data usage per mobile broadband subscription, GB, 2017

Author(s):  
Sébastien Canard ◽  
Nicolas Desmoulins ◽  
Sébastien Hallay ◽  
Adel Hamdi ◽  
Dominique Le Hello

2019 ◽  
Vol 8 (2) ◽  
pp. 1703-1705

The advancement of technical knowhow in wireless mobile phone clients and their inceptions from cloud server, have been implemented as versatile applications that utilize an optimal user experience. By using fabrication components in the user domain, we have yet to instill peripheral interfaces such us CPUs, memory and batteries in to achieving a personal computer machine usage in android devices. To empower the user interface as deployed in android applications, we must design a distributed computing environment that can be deployed in cloud servers. This thin client distributed architecture needs to be effective in ensuring a efficient android user experience . To resolve delays and latency from asynchronous mobile data usage, an effective deployment design must be implemented in mobilemobile environment, that uses Tcp/Ip packets in transferring from routable mobile switching server


2017 ◽  
Vol 5 (1) ◽  
pp. 45
Author(s):  
Teten Dian Hakim

Trafik pengguna mobile data untuk layanan akses internet senantiasa mengalami peningkatan dari tahun ke tahun terutama untuk penggunaan layanan mobile broadband dibanding dengan layanan fixed broadband. Kenaikan trafik mobile broadband secara eksponensial ini dipicu dengan munculnya berbagai macam aplikasi, android, jejaring sosial dan media content yang ditambah lagi dengan pertumbuhan berbagai macam perangkat smartphone, tablet, dan mobile PC yang menawarkan beraneka ragam fitur dan teknologi terkini. Teknologi LTE (Long Term Evolution) yang di-standarisasi oleh 3GPP (Third Generation Partnership Project) sebagai organisasi standar internasional merupakan teknologi yang memberikan kecepatan data dan kapasitas yang besar. Dengan akses DL 100 Mbps dan UL 50 Mbps untuk standar teknologi LTE release 8. Sehingga menjadi salah satu solusi untuk mengatasi kenaikan trafik dari pengguna layanan mobile broadband. Dengan menggunakan metodologi dalam tahapan-tahapan pada proses RIA (Regulatory Impact Analysis), hal ini digunakan untuk memilih dan menentukan stategi alternatif tool spectrum management yang dipergunakan dan juga opsi refarming yang paling efektif termasuk dampak dari setiap masing-masing opsi tersebut. Metoda pendekatan voluntary spectrum redeployment dan penerapan netral teknologi yang dilakukan secara transparan dan terbuka melalui konsultasi publik dengan melibatkan stakeholder merupakan strategi alternatif spectrum management yang bisa diterapkan untuk melakukan proses refarming di pita frekuensi 1800 MHz di Indoensia. Dan instrumen spectrum management ini juga digunakan untuk melakukan penataan menyeluruh pita frekuensi 1800 MHz sehingga didapatkan jumlah total lebar bandwidth yang ideal dan kanal alokasi frekuensi yang berdekatan atau contiguous sehingga dapat digunakan dalam penerapan teknologi LTE.


2013 ◽  
Vol 2 (3) ◽  
pp. 73-93 ◽  
Author(s):  
Rikin Thakker ◽  
Timothy Eveleigh ◽  
Thomas Holzer ◽  
Shahryar Sarkani

Radio spectrum is an encumbered and finite resource. Perception of radio spectrum scarcity has been linked, sometimes linearly, to the higher demand of mobile data services and the greater market penetration of mobile broadband devices. Cellular operators worldwide have been asking to allocate more spectrum to support this demand. To validate the “spectrum scarcity” notion, various elements of the wireless ecosystem, including network infrastructure, spectral efficiency of mobile technologies, and data offloading via unlicensed spectrum need to be appraised; and their effects on “spectrum utilization” need to be understood. Research presented here takes a system dynamics approach to study dynamic behaviour among these elements and their effects on usage of spectrum through sensitivity analysis. A stock-and-flow model-based simulation is employed for hypotheses testing to justify the need for more spectrum. Simulation results show that mobile data demand can exceed the current capacity of cellular networks causing a spectrum deficit if apt planning of spectrum policies and appropriate infrastructure investment are delayed.


2019 ◽  
Vol 2019 ◽  
pp. 1-10
Author(s):  
Sungwook Kim

In the phase of the process that will lead to the future 5G networks, the demand of mobile data usage will continue to rise sharply, and the high cost of data will become a critical concern. As a major paradigm shift, data sponsoring has been introduced with the hope of benefiting the practice of the telecommunication industry. The main idea of data sponsoring is to subsidize the service payment while appealing to more users; it can potentially generate more profit gains for both the users and the system operators. In this paper, the intelligent interactions of three network entities, i.e., the users, the service providers, and the content providers, are analyzed based on the basic ideas of game theory, and we design an effective data sponsoring control scheme using a novel dual-leader Stackelberg game model. As dual leaders, service and content providers share the profit in a cooperative manner, and mobile users react individually to the leaders in a competitive manner. By employing different game methodologies, we investigate the mutual relationship between the network entities and aim to balance the user’s payoff and the system revenue. To validate the proposed approach, an analytic simulation model and numerical results are provided to demonstrate the efficiency and feasibility of the proposed approach under the 5G network infrastructure. Finally, we provide further challenges and various future opportunities in this research area.


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