We compute the throughput obtained by a TCP connection in a UMTS environment. For downloading data at a mobile terminal, the packets of each TCP connection are stored in separate queues at the base station (node B). Also due to fragmentation of the TCP packets into Protocol Data Units (PDU) and link layer retransmissions of PDUs there can be significant delays at the queue of the node B. In such a scenario the existing models of TCP may not be sufficient. Thus, we provide a new approximate TCP model and also obtain new closed-form expressions of mean window size. Using these we obtain the throughput of a TCP connection which matches with simulations quite well
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Researchers have used extensive simulation and experimental studies to understand TCP performance in...
We compute the throughput obtained by a TCP connection in a UMTS environment. For downloading data a...
TCP (Transmission Control Protocol) is the most commonly used protocol for internet communication du...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
Universal Mobile Telecommunications System (UMTS) is the forthcoming global mobile network for packe...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
In this paper, we study the performance of TCP in both ideal and non-ideal network environments. For...
In this paper, we study the performance of TCP in both ideal and non-ideal network environments. For...
In this paper, we study the performance of TCP in both ideal and non-ideal network environments. For...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Researchers have used extensive simulation and experimental studies to understand TCP performance in...
We compute the throughput obtained by a TCP connection in a UMTS environment. For downloading data a...
TCP (Transmission Control Protocol) is the most commonly used protocol for internet communication du...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
With the evolution of 3G technologies like Universal Mobile TelecommunicationSystem (UMTS), the usag...
Universal Mobile Telecommunications System (UMTS) is the forthcoming global mobile network for packe...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
In this paper, we study the performance of TCP in both ideal and non-ideal network environments. For...
In this paper, we study the performance of TCP in both ideal and non-ideal network environments. For...
In this paper, we study the performance of TCP in both ideal and non-ideal network environments. For...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Since wireless networks which can carry high bit rates have become ubiquitous, mobile computing is n...
Researchers have used extensive simulation and experimental studies to understand TCP performance in...