Title :
Evaluation of BER and capacity for ultra wide band communication receivers
Author :
Pauline, S. Saranya ; Lakshmi, C. Veera
Author_Institution :
Dept. of ECE, M. Kumarasamy Coll. of Eng., Karur, India
Abstract :
UWB(Ultra Wide Band) is a radio technology that transmits information spread over a large bandwidth. These systems share the radio frequency spectrum with narrowband signals and also provide high data rates, greater bandwidth and improved channel capacity. Hence it has attracted a lot of interest in researchers worldwide. The various design challenges include channel estimation and interference mitigation. MAI (Multiple Access Interference) degrades the performance of UWB systems. To suppress the multiple access interference, an α-stable model along with Fama/Roll-McCulloch parameter estimation technique is proposed. This model adapts to the noise and interference in the environment and hence it forms a robust technique for adaptive receiver designs. From simulation results, it is verified that the proposed method provides better Bit Error Rate and capacity performance than the linear detectors.
Keywords :
channel capacity; channel estimation; error statistics; interference (signal); interference suppression; multi-access systems; radio receivers; radio spectrum management; ultra wideband communication; α-stable model; BER; UWB communication receivers; adaptive receiver designs; bit error rate; channel estimation; improved channel capacity; interference mitigation; multiple access interference; narrowband signals; parameter estimation technique; radio frequency spectrum sharing; ultra wide band communication receivers; Adaptation models; Bit error rate; Computational modeling; Detectors; Educational institutions; Noise; Receivers; α-stable model; Multiple Access Interference (MAI); Ultra Wide Band (UWB);
Conference_Titel :
Information Communication and Embedded Systems (ICICES), 2014 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4799-3835-3
DOI :
10.1109/ICICES.2014.7034014