In this paper, the discrete probability density function (pdf) of the average aperiodic cross-correlation function (ACF) is modeled by a triangular function to simplify the evaluation of the bit-error-rate (BER) performance. Both the pdf of ACF for random binary sequence and the pdf of ACF for Gold sequence were employed to examine the simplified linear model. The pdf of multiple-access interference (MAI) component obtained from probabilistic approach was employed to investigate the discrepancy among the approximations. It has been shown that the sum of square error between the average pdf of the MAI component for Gold sequence and that of the simplified linear model was 0.0683% which was negligible, and thus the simplified linear model can...
This paper deals with a new method to design polyphase spreading sequences for DS CDMA wireless appl...
A new method for generating families of ternary spreading sequences is presented. The sequences have...
Author name used in this publication: Francis C. M. LauAuthor name used in this publication: Chi K. ...
We derive a computationally feasible closed form error expression for probability of error for a sma...
Analytical expressions for the probability density function of block-wise signal-to-noise-plus-inter...
The performance of binary asynchronous direct sequence spread spectrum multiple access communication...
金沢大学理工研究域電子情報学系We study asynchronous SSMA communication systems using binary spreading sequences of ...
In this contribution an accurate average Bit Error Rate (BER) formula is derived for MC-DS-CDMA in t...
In this contribution an accurate average bit error rate (BER) formula is derived for Nakagami-faded ...
72 p.In this dissertation, we analyze the bit error rate (BER) performance of asynchronous multicarr...
With code division multiple access (CDMA) systems being the prominent multiple access scheme for the...
Absrract-Upper and lower bounds on the average probability of error are obtained for direct-sequence...
It is known that the multiple access interference (MAI) of a quasi-synchronous (QS) multicarrier dir...
In this dissertation, we study the average performances of the coherent and non-coherent decorrelati...
Coordinated Science Laboratory was formerly known as Control Systems LaboratoryNational Science Foun...
This paper deals with a new method to design polyphase spreading sequences for DS CDMA wireless appl...
A new method for generating families of ternary spreading sequences is presented. The sequences have...
Author name used in this publication: Francis C. M. LauAuthor name used in this publication: Chi K. ...
We derive a computationally feasible closed form error expression for probability of error for a sma...
Analytical expressions for the probability density function of block-wise signal-to-noise-plus-inter...
The performance of binary asynchronous direct sequence spread spectrum multiple access communication...
金沢大学理工研究域電子情報学系We study asynchronous SSMA communication systems using binary spreading sequences of ...
In this contribution an accurate average Bit Error Rate (BER) formula is derived for MC-DS-CDMA in t...
In this contribution an accurate average bit error rate (BER) formula is derived for Nakagami-faded ...
72 p.In this dissertation, we analyze the bit error rate (BER) performance of asynchronous multicarr...
With code division multiple access (CDMA) systems being the prominent multiple access scheme for the...
Absrract-Upper and lower bounds on the average probability of error are obtained for direct-sequence...
It is known that the multiple access interference (MAI) of a quasi-synchronous (QS) multicarrier dir...
In this dissertation, we study the average performances of the coherent and non-coherent decorrelati...
Coordinated Science Laboratory was formerly known as Control Systems LaboratoryNational Science Foun...
This paper deals with a new method to design polyphase spreading sequences for DS CDMA wireless appl...
A new method for generating families of ternary spreading sequences is presented. The sequences have...
Author name used in this publication: Francis C. M. LauAuthor name used in this publication: Chi K. ...