Title
Throughput Analysis of DS CDMA/Unslotted ALOHA Wireless Networks with Fixed Packet Length in Rayleigh Fading Finite-State Markov Channel Model
Abstract
We propose the finite-state Markov channel (FSMC) model to the throughput analysis of DS CDMA/unslotted ALOHA wireless networks in the mobile environment. The FSMC model can characterize the correlation structure of Rayleigh fading process, and the degree of correlation depends on the Doppler frequency shift. The FSMC model is suited to the throughput analysis by queueing theory due to its Markov chain nature. The previous papers in DS CDMA/unslotted ALOHA wireless networks in Rayleigh fading consider a whole packet. They ignore that the channel gain or multiple access interference can change symbol-to-symbol. In our proposed analysis, both the channel gain and multiple access interference can change from symbol to symbol. It is not just a packet-level analysis in the previous papers, and is a more general symbol-level analysis. Our generalized scheme should be more suited to realistic Rayleigh fading in the mobile environment. We consider two cases: (1) the system without carrier load sensing protocol (CLSP) and (2) systems with CLSP. For both cases, we analyze the theoretical throughput by queueing theory for various averaged signal-to-noise ratios and Doppler frequency shifts, and the computer simulated throughput matches the theoretical throughput.
Year
DOI
Venue
2013
10.1007/s11277-012-0992-9
Wireless Personal Communications
Keywords
Field
DocType
fsmc model,mobile environment,rayleigh fading finite-state markov,channel gain,throughput analysis,channel model,previous paper,multiple access interference,theoretical throughput,doppler frequency shift,queueing theory,ds cdma,fixed packet length
Wireless network,Rayleigh fading,Aloha,Computer science,Markov chain,Computer network,Queueing theory,Interference (wave propagation),Throughput,Code division multiple access
Journal
Volume
Issue
ISSN
71
4
1572-834X
Citations 
PageRank 
References 
1
0.35
20
Authors
4
Name
Order
Citations
PageRank
Shu-ming Tseng110129.74
Hung-Pin Lin210.35
Chih-Hao Chen310.35
Yung-Chung Wang4485.85