41 research outputs found

    Design and Analysis of 5G Telemedicine Systems

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    Recently, remote health care is one of the serious issues to look after. Due to lack of technological advancement, the services in heath have been degrading. This work details about design of 5G Wireless communication systems and further it is implemented in telemedicine systems. As 5G deals with FBMC as a selected waveform and this has been chosen because it has the higher spectrum allocation capability and better interference rejection as compared to that of other multicarrier techniques. The main motivation to jump into 5G technologies is because of more connected devices and it can allocate the underutilized spectrum to the secondary user verifying the certain policies. As these telemedicine systems is one of the most needed technologies in health care especially in remote places and 5G systems has higher data rate where the health specialist can receive the patient status at less time and act as per the condition. This work details about transmission of patient’s vital sign, image and video and analysis which are most essential components in future Telemedicine systems

    Multimedia Communication using DVB Technology Over Open Range

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    AbstractThe DVB technology is being used by millions of users across the globe in order to view television. This technology, processes the signal generated in one part of the globe by encoding it in multiple layers and sending them on a carrier wave which is being reflected by a satellite which is then received by the antennae at our home. The same widely proven technology may be re-used for ground based communication for its improvement which still has various limitations. Hence, in this paper,the development of a local open range communication system using DVB is being proposed in order to setup a communication link between two distant places

    FEEDBACK EQUALIZER FOR VEHICULAR CHANNEL

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    In this fast moving world, the number of fatal accidents is increasing day by day and this leads to the requirement of the availability of the traffic condition and road conditions related data to the users. Therefore, to support Vehicle-to-vehicle (V2V) communication in high speed mobility condition, it is required to have reliable and secure of communication. Here, the performance of multiple input and multiple output (MIMO) system as a combination of nonlinear decision feedback receiver (DFE) have been investigated in V2V channel. In this paper, through the simulation, the results are presented to show the effect of the channel correlation coefficient and Doppler shift (Fd) (because of the relative velocity of the vehicle) over the performance of the MIMO system. As a counter measure of those problems non-linear receivers have been formulated and analyzed
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