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Vetrivelan, P.
- Contourlet Based Digital Image Watermarking
Abstract Views :67 |
PDF Views:2
Finally, the difference and watermarked image is displayed. From this it is possible to compute PSNR and MSE values. It finds its application in secret communication systems, the robustness against noise and data rate is the most important feature, while for data authentication, imperceptibility and robustness against different processing attacks are the most significant ones.
Authors
Affiliations
1 Department of Electronics and Communication Engineering, Sri Ramakrishna Institute of Technology, Coimbatore, IN
2 Department of Bio Medical Engineering, PSG College of Technology, Coimbatore, IN
1 Department of Electronics and Communication Engineering, Sri Ramakrishna Institute of Technology, Coimbatore, IN
2 Department of Bio Medical Engineering, PSG College of Technology, Coimbatore, IN
Source
Digital Image Processing, Vol 3, No 10 (2011), Pagination: 644-650Abstract
The main aim of this paper is to hide the digital data or a digital image into another image using a Contourlet transform. In order to obtain Contourlet transform, the original image is divided into low and high frequency images by using Laplacian pyramid and directional filter bank. Since the datas can be hidden only on low frequency images, the high frequency is again divided into number of sub bands using directional filter bank. Hence by combining these sub bands, Contourlet coefficients can be obtained. Then by applying inverse Laplacian and inverse directional filter bank to these sub bands the reconstructed image is obtained. Thus Contourlet coefficients are found next is to watermark the resultant image, by embedding and retrieving method.Finally, the difference and watermarked image is displayed. From this it is possible to compute PSNR and MSE values. It finds its application in secret communication systems, the robustness against noise and data rate is the most important feature, while for data authentication, imperceptibility and robustness against different processing attacks are the most significant ones.
Keywords
CT-Contourlet Transform, DWT-Discrete Wavelet Transform, LP-Laplacian Pyramid, DFB-Directional Filter Bank, PDFB-Pyramid Directional Filter Bank, VQ-Vector Quantization, PSNR-Peak to Signal Noise Ratio, MSE-Mean Square Error.- Implementation of SPIHT Algorithm for Image Compression Using Lifting Scheme
Abstract Views :75 |
PDF Views:2
Authors
Affiliations
1 Sri Ramakrishna Institute of Technology, IN
2 Bio-Medical Engineering Department, PSG College of Technology, Coimbatore, Tamilnadu, IN
1 Sri Ramakrishna Institute of Technology, IN
2 Bio-Medical Engineering Department, PSG College of Technology, Coimbatore, Tamilnadu, IN
Source
Digital Image Processing, Vol 2, No 5 (2010), Pagination: 161-165Abstract
This paper discuss the compression of an image using lifting scheme to implement SPIHT (set partitioning of hierarchical trees). The SPIHT algorithm uses dynamic data structure that does not make it possible for use in a hardware system. Here the implementation of SPIHT algorithm using lifting scheme in system c is done, so that it becomes suitable for implementation in FPGA. The hardware implementation is done in a XILINX XC3S500E device.Keywords
Discrete Wavelet Transform, SPIHT, Lifting Scheme, Image Compression.- Novel BNC Placement Strategy for Wireless Body Area Networks
Abstract Views :95 |
PDF Views:0
Authors
Affiliations
1 School of Electronics Engineering, VIT University, Chennai - 600127, Tamil Nadu, IN
1 School of Electronics Engineering, VIT University, Chennai - 600127, Tamil Nadu, IN
Source
Indian Journal of Science and Technology, Vol 9, No 36 (2016), Pagination:Abstract
Objective: Real-time monitoring of patients is considered as the key issues in managing healthcare system. Wireless Body Area Networks (WBAN) is one of the wise healthcare monitoring systems holding applications in numerous fields like medical, wellness, military, sports and so forth. The correspondence standard for Wireless Body Area Networks is characterized by the IEEE 802.15.6 for the operation around the human body. In WBAN, network longevity is one noteworthy issue confronted following the constrained energy supply in body nodes. Methods: The primary goal of this work is to expand the network lifetime, so a Modified Position Aware Algorithm is actualized where the spatial coordinates and battery status of every node is shared to all the nodes inside the network by incorporating the Probabilistic Energy Aware Routing (PER) and Body Node Coordinator (BNC) is versatile in the network. Results: A simulation result demonstrates that the network lifetime is reliably improved. The placement of BNC using the Modified Position-Aware BNC Placement algorithm along with the PER protocol improves the network lifetime reliably. Application: The proposed system facilitates to intimate the patient’s critical parameters to the remote doctor in prior, this saves the diagnosis time and thus helps to save the Life.Keywords
Patient, Body Area Networks (BAN), Body Node Coordinator (BNC), Network Longevity, Spatial Co-Ordinates.- Efficient Location and Capacity Planning of Node B for 3G Networks
Abstract Views :84 |
PDF Views:0
Authors
Affiliations
1 School of Electronics Engineering, VIT University, Chennai – 600127, Tamil Nadu, IN
2 School of Electronics Engineering, VIT University, Chennai – 600127, Tamil Nadu
3 RF Planning, Bharti Airtel Ltd, Chennai - 600028, Tamil Nadu, IN
4 Middlesex University, London, NW4 4BT, United Kingdom
1 School of Electronics Engineering, VIT University, Chennai – 600127, Tamil Nadu, IN
2 School of Electronics Engineering, VIT University, Chennai – 600127, Tamil Nadu
3 RF Planning, Bharti Airtel Ltd, Chennai - 600028, Tamil Nadu, IN
4 Middlesex University, London, NW4 4BT, United Kingdom
Source
Indian Journal of Science and Technology, Vol 9, No 7 (2016), Pagination:Abstract
Capacity planning of 3G network unlike 2G is cumbersome. The 3G capacity is multi-fold. It depends on Power Utilization, Code Utilization, Iub (interface between the Radio Network Controller (RNC) and the Node B) and Channel Element (CE). The location of Node B plays a crucial role in 3G Planning. The Radio Frequency planner needs to select the best optimal location for setting up the 3G site in order to a seamless coverage to the customers. In this paper, these topics are explored in a detail manner. For this planning the Node B layout for Airtel in the densely populated Santhome area of Chennai is discussed. The basis issue is the interdependence between coverage and capacity in 3G. In 3G systems, both capacity and quality should be monitored to ensure the best network performance. Planning of new base station has been first treated with an analytical study of the cell coverage range for a specific environment and service. The accomplished results have been checked using ASSET simulation tool and Geographical Information System (GIS) tool.Keywords
ASSET, Capacity. Coverage Prediction, Pilot Pollution, 3G- Optimizing Energy in Relay Transmission Schemes in LTE-A Networks
Abstract Views :87 |
PDF Views:0
Authors
Affiliations
1 VIT University, Chennai - 600127, Tamil Nadu, IN
1 VIT University, Chennai - 600127, Tamil Nadu, IN