We demonstrate a performance study on waveletbased OFDM, particularly using DWT and WPT-OFDM as substitutions for Fourier- based OFDM with the focus on impulse noise effects. We begin by constructing the models of the inverse and forward transforms. We explain in detail each model and study the BER performance in two scenarios when varying the Poisson recurrence parameter a from small to large. The waveletbased OFDM (DWT-OFDM and WPT-OFDM) are assumed to have orthonormal bases and perfect reconstruction properties. Results show that a large value of a limits the impact of impulsive noise on the system.We also found that the WPT-OFDM platform is superior in BER to others
An Interference Cancellation Algorithm (ICA) for both Fourier- and wavelet-based OFDM is proposed. I...
The paper presents the analysis of peak average power ratio (PAPR) performance of wavelet based OFDM...
In this work, we present a comparative study on the performance of Fourier-based OFDM (FFT-OFDM) and...
A performance study on wavelet-based OFDM, particularly using DWT OFDM as substitutions for Fourier...
A performance study on wavelet-based OFDM, particularly using DWT OFDM as substitutions for Fourier...
The performance study on wavelet based OFDM and Fourier based OFDM with the focus on impulse noise e...
The performance study on wavelet based OFDM and Fourier based OFDM with the focus on impulse noise e...
Spectrum has valuable resource in wireless communication. In wireless communication some spectrum is...
In this work, a simple mitigation technique for the effect of impulsive noise in Haar discrete wave...
We present a comparative study on Fourier-based OFDM (FFT-OFDM) and wavelet-based OFDM (DWT-OFDM)in ...
We present a comparative study on Fourier-based OFDM (FFT-OFDM) and wavelet-based OFDM (DWT-OFDM)in ...
This paper investigates performance degradation of conventional Orthogonal Frequency Division Multip...
Recently researchers have developed many techniques to solve high PAPR problem. These techniques hav...
An Interference Cancellation Algorithm (ICA) for both Fourier- and wavelet-based OFDM is proposed. I...
Abstract — Peak Signal-to-Noise Ratio (PSNR) is a serious issue in OFDM systems. Several techniques ...
An Interference Cancellation Algorithm (ICA) for both Fourier- and wavelet-based OFDM is proposed. I...
The paper presents the analysis of peak average power ratio (PAPR) performance of wavelet based OFDM...
In this work, we present a comparative study on the performance of Fourier-based OFDM (FFT-OFDM) and...
A performance study on wavelet-based OFDM, particularly using DWT OFDM as substitutions for Fourier...
A performance study on wavelet-based OFDM, particularly using DWT OFDM as substitutions for Fourier...
The performance study on wavelet based OFDM and Fourier based OFDM with the focus on impulse noise e...
The performance study on wavelet based OFDM and Fourier based OFDM with the focus on impulse noise e...
Spectrum has valuable resource in wireless communication. In wireless communication some spectrum is...
In this work, a simple mitigation technique for the effect of impulsive noise in Haar discrete wave...
We present a comparative study on Fourier-based OFDM (FFT-OFDM) and wavelet-based OFDM (DWT-OFDM)in ...
We present a comparative study on Fourier-based OFDM (FFT-OFDM) and wavelet-based OFDM (DWT-OFDM)in ...
This paper investigates performance degradation of conventional Orthogonal Frequency Division Multip...
Recently researchers have developed many techniques to solve high PAPR problem. These techniques hav...
An Interference Cancellation Algorithm (ICA) for both Fourier- and wavelet-based OFDM is proposed. I...
Abstract — Peak Signal-to-Noise Ratio (PSNR) is a serious issue in OFDM systems. Several techniques ...
An Interference Cancellation Algorithm (ICA) for both Fourier- and wavelet-based OFDM is proposed. I...
The paper presents the analysis of peak average power ratio (PAPR) performance of wavelet based OFDM...
In this work, we present a comparative study on the performance of Fourier-based OFDM (FFT-OFDM) and...