The color image transmission over wireless channel is already explored by many researchers. Due to eye perception for only low frequency component the de-noising technique may be add at receiver end of the wireless device. In this paper, Mobile WiMAX system are used for color image transmission and de-noising method is used for improving the performance. RMSE, PSNR and Spectral efficiency are taken as two parameters for comparing the performance. The multiple input multiple output technique is also used here with the 2x2 antenna systems and QAM-4, QAM-8, and QAM-16 for BER performance improvement. A clear improvement using de-noising technique is found and described in this project
The advancements in broadband and mobile communication has given many privileges to the subscribers ...
In this paper, we made a comprehensive study to evaluate the performance of a multi antenna supporte...
Future mobile communication needs a hundred Mbps rate, video and audio streaming, asymmetric, multip...
The image transmission over wireless channel is already explored by many researchers. Due to eye per...
In wireless communication, the receiver side BER strongly affected by channel noise, interference, d...
The public’s demand for wireless multimedia is stimulating research for efficient paradigms for the ...
In wireless communication, the receiver side bit error rate strongly affected by channels noise, syn...
Abstract: In this paper, the performance of M-ary modulations schemes (MPSK, MFSK,MQAM) based wirel...
The modern wireless systems are required to have high voice quality and data rate. Since our concern...
Mobile communication has developed very during the last few years. Due to this fast development in t...
The consistent demand for higher data rates and ability to send large volumes of data without compro...
This paper investigates the impact of different modulation techniques for digital communication syst...
This thesis report is submitted in partial fulfillment of the requirements for the degree of Bachelo...
Mobile WiMAX is a wireless networking system which provides wireless broadband to fixed and mobile t...
WiMAX is defined as Worldwide Interoperability for Microwave Access by the WiMAX Forum and its indus...
The advancements in broadband and mobile communication has given many privileges to the subscribers ...
In this paper, we made a comprehensive study to evaluate the performance of a multi antenna supporte...
Future mobile communication needs a hundred Mbps rate, video and audio streaming, asymmetric, multip...
The image transmission over wireless channel is already explored by many researchers. Due to eye per...
In wireless communication, the receiver side BER strongly affected by channel noise, interference, d...
The public’s demand for wireless multimedia is stimulating research for efficient paradigms for the ...
In wireless communication, the receiver side bit error rate strongly affected by channels noise, syn...
Abstract: In this paper, the performance of M-ary modulations schemes (MPSK, MFSK,MQAM) based wirel...
The modern wireless systems are required to have high voice quality and data rate. Since our concern...
Mobile communication has developed very during the last few years. Due to this fast development in t...
The consistent demand for higher data rates and ability to send large volumes of data without compro...
This paper investigates the impact of different modulation techniques for digital communication syst...
This thesis report is submitted in partial fulfillment of the requirements for the degree of Bachelo...
Mobile WiMAX is a wireless networking system which provides wireless broadband to fixed and mobile t...
WiMAX is defined as Worldwide Interoperability for Microwave Access by the WiMAX Forum and its indus...
The advancements in broadband and mobile communication has given many privileges to the subscribers ...
In this paper, we made a comprehensive study to evaluate the performance of a multi antenna supporte...
Future mobile communication needs a hundred Mbps rate, video and audio streaming, asymmetric, multip...