The process of adding and removing the noises to an image is said to be as Image denoising. The process can be used in many image applications. This paper presents a method of satellite image denoising scheme using a wavelet transform called as Discrete Cosine Transform (DCT). The noise that is added in this scheme is the salt and pepper noise. By using hard thresholding method in the noise image the co-ordinates of the image can be changed and the original image can be retrieved by removing the noise. This can be done by Inverse Discrete Cosine Transform (IDCT). The performance measures of the proposed system can be done by measuring the PRNR values of the denoised image
Remote Sensing means capturing images of earth’s surface using satellites. Remote Sensing finds its ...
Raw satellite images are considered high in resolution, especially multispectral images captured by...
We use images in our day to day life for keeping a record of information or merely to convey a messa...
This paper proposes a satellite image enhancement system consisting of denoising and resolution enha...
The Image denoising is the retrieval of quality image from the noisy image corrupted by channel nois...
This paper addresses image enhancement system consisting of image denoising technique based on Dual ...
This paper proposes a satellite image enhancement system consisting of denoising and resolution enha...
Now a day’s digital image processing applications are widely used in various fields such as medical,...
In this paper, we propose a new multiresolution image denoising technique using Discrete Sine Transf...
In today’s world, satellite images are essential for many applications such as defense monitoring, g...
AbstractTo extract information from remotely sensed images for wide range of applications, visual an...
ABSTRACT Satellite images are being now-a-days used in all fields. The major problem of these color...
An image is often corrupted by a noise in its acquisition and transmission. A high resolution remote...
WOS:000838374000001In this article, a salt and pepper noise (SPN) removal method is proposed based o...
The image acquired from a sensor is always degraded by some form of noise. The noise can be estimate...
Remote Sensing means capturing images of earth’s surface using satellites. Remote Sensing finds its ...
Raw satellite images are considered high in resolution, especially multispectral images captured by...
We use images in our day to day life for keeping a record of information or merely to convey a messa...
This paper proposes a satellite image enhancement system consisting of denoising and resolution enha...
The Image denoising is the retrieval of quality image from the noisy image corrupted by channel nois...
This paper addresses image enhancement system consisting of image denoising technique based on Dual ...
This paper proposes a satellite image enhancement system consisting of denoising and resolution enha...
Now a day’s digital image processing applications are widely used in various fields such as medical,...
In this paper, we propose a new multiresolution image denoising technique using Discrete Sine Transf...
In today’s world, satellite images are essential for many applications such as defense monitoring, g...
AbstractTo extract information from remotely sensed images for wide range of applications, visual an...
ABSTRACT Satellite images are being now-a-days used in all fields. The major problem of these color...
An image is often corrupted by a noise in its acquisition and transmission. A high resolution remote...
WOS:000838374000001In this article, a salt and pepper noise (SPN) removal method is proposed based o...
The image acquired from a sensor is always degraded by some form of noise. The noise can be estimate...
Remote Sensing means capturing images of earth’s surface using satellites. Remote Sensing finds its ...
Raw satellite images are considered high in resolution, especially multispectral images captured by...
We use images in our day to day life for keeping a record of information or merely to convey a messa...