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Dive into the research topics where Giorgos Tatsis is active.

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Featured researches published by Giorgos Tatsis.


ORGANIZED BY THE HELLENIC PHYSICAL SOCIETY WITH THE COOPERATION OF THE PHYSICS DEPARTMENTS OF GREEK UNIVERSITIES: 7th International Conference of the Balkan Physical Union | 2010

In depth analysis of noise effects in orthogonal frequency division multiplexing systems, utilising a large number of subcarriers

Spyridon K. Chronopoulos; Constantinos I. Votis; Vasilis Raptis; Giorgos Tatsis; Panos Kostarakis

Orthogonal frequency division multiplexing (OFDM) is a multicarrier data transmission, where a single stream of information is divided over a large number of subcarriers. The primary purpose of this work was to find out the relationships connecting BER performance in noisy environments and the number of transmitted subcarriers. In order to simulate this kind of environment, various noise types where taken into consideration such as complex Rayleigh fading, complex rician noise, AWGN and phase noise.


Int'l J. of Communications, Network and System Sciences | 2011

Enhanced PAPR in OFDM without Deteriorating BER Performance

Spyridon K. Chronopoulos; Giorgos Tatsis; Vasilis Raptis; Panos Kostarakis

Orthogonal frequency division multiplexing (OFDM) is vastly used in wireless networks. Its superiority relies on the fact that information can be split in large amount of frequencies. Each frequency is called information subcarrier. OFDM exhibits excellent annotation in channel fades and interferers as only a few subcarriers can be affected and consequently a small part of the original data stream can be lost. Orthogonality between frequencies ensures better spectrum management and obviates the danger of intersymbol interference. However, an essential problem exists. OFDM systems have high peak to average power ratio. This implies large fluctuations in signal power, ending up in increasing complexity of ADCs and DACs. Also, power amplifiers must work in a larger linear dynamic region. In this paper we present two new techniques for reducing Peak to Average Power Ratio (PAPR), that can be added in any OFDM system and we compare them with other existing schemes.


Int'l J. of Communications, Network and System Sciences | 2010

Design and Measurements of Ultra-Wideband Antenna

Giorgos Tatsis; Vasilis Raptis; Panos Kostarakis

This paper describes the design, realization and experimental measurements of an antenna element to operate at ultra-wideband (UWB) spectrum. The type of this antenna is a circular disk monopole (CDM), with two notches opposite to each other at two sides of the disk. The feed of the antenna is a coplanar waveguide (CPW). The effect of the presence of the notches is studied through simulations and tested experimentally.


Wireless Personal Communications | 2016

Performance of Turbo Coded OFDM Under the Presence of Various Noise Types

Spyridon K. Chronopoulos; Vasilis Christofilakis; Giorgos Tatsis; Panos Kostarakis

A telecommunication system uses carriers in order to transmit information through a cable or wirelessly. If each time only one carrier is transmitted, then the system’s signal will not be immune to frequency selective fading. If frequency selective fading includes the working frequency of the system, then the wireless link will not be established. Orthogonal frequency division multiplexing (OFDM) is the primary solution for coping with inter-signal interference and frequency-selective fading. Many carriers can be produced by splitting a fast information stream to slower data series. Different orthogonal frequencies carry slower data series. System’s performance can be further enhanced with the utilization of turbo codes. Turbo codes make the system more immune to noise effects with excellent BER results. This paper presents the thorough analysis of a turbo coded OFDM scheme using a PCCC technique in the presence of a channel which includes AWGN, phase noise, Rayleigh fading, Rician fading and Doppler shift.


ORGANIZED BY THE HELLENIC PHYSICAL SOCIETY WITH THE COOPERATION OF THE PHYSICS DEPARTMENTS OF GREEK UNIVERSITIES: 7th International Conference of the Balkan Physical Union | 2010

Performance of UWB‐Impulse Radio Receiver Based on Matched Filter Implementation with Imperfect Channel Estimation

Giorgos Tatsis; Constantinos I. Votis; Vasilis Raptis; Vasilis Christofilakis; Spyridon K. Chronopoulos; Panos Kostarakis

UWB communications have attracted considerable interest, targeting applications in high‐speed data transfer wireless communication systems. This paper studies the effects of matched filter receiver in the performance of such a system. Such effects are evaluated in terms of the Bit Error Rate (BER) for a Binary Pulse Position Modulation (BPPM) scheme, considering multipath propagation channel and the presence of noise. The case of imperfect channel estimation is taken into account. Dependence of BER on parameters such as signal to noise ratio, number of estimation pulses and correletor taps is also presented.


ORGANIZED BY THE HELLENIC PHYSICAL SOCIETY WITH THE COOPERATION OF THE PHYSICS DEPARTMENTS OF GREEK UNIVERSITIES: 7th International Conference of the Balkan Physical Union | 2010

Design and Implementation of Ultra‐Wideband Impulse Radio Transmitter

Giorgos Tatsis; Constantinos I. Votis; Vasilis Raptis; Vasilis Christofilakis; Spyridon K. Chronopoulos; Panos Kostarakis

This paper describes the design and implementation of an UWB Impulse Radio transmitter. This UWB transmitter produces very short pulses with possibility of time‐shifting to be used in cases of Pulse Position Modulation (PPM). The transmitter, which is based on step recovery diode (SRD), can operate at 50 Mbps with high repetition rate. Experimental results show that, ultra short pulses with duration of about 1nsec and spectrum exceeding 2 GHz at −10 dB, are produced and transmitted.


Journal of Atmospheric and Solar-Terrestrial Physics | 2015

A prototype data acquisition and processing system for Schumann resonance measurements

Giorgos Tatsis; Constantinos I. Votis; Vasilis Christofilakis; Panos Kostarakis; Vasilis Tritakis; Christos Repapis

Abstract In this paper, a cost-effective prototype data acquisition system specifically designed for Schumann resonance measurements and an adequate signal processing method are described in detail. The implemented system captures the magnetic component of the Schumann resonance signal, using a magnetic antenna, at much higher sampling rates than the Nyquist rate for efficient signal improvement. In order to obtain the characteristics of the individual resonances of the SR spectrum a new and efficient software was developed. The processing techniques used in this software are analyzed thoroughly in the following. Evaluation of systems performance and operation is realized using preliminary measurements taken in the region of Northwest Greece.


Int'l J. of Communications, Network and System Sciences | 2010

A/D Restrictions (Errors) in Ultra-Wideband Impulse Radios

Giorgos Tatsis; Constantinos I. Votis; Vasilis Raptis; Vasilis Christofilakis; Panos Kostarakis

Ultra-Wideband Impulse Radio (UWB-IR) technologies, although are relatively easy in transmission but they present difficulties in reception, in fact the reception of such waveform is a quite complicated matter. The main reason is that in fully digital receiver the received waveform must be sampled at a rate of several GHz. This paper focuses on the impact of the Analog to Digital (A/D) conversion stage that is used to sample the received waveform. More specifically we focus on the impact of the two main parameters that affect the performance of the Software Defined Radio (SDR) system. These parameters are the bit resolution and the time jittering. The influence of these parameters is deeply examined.


ORGANIZED BY THE HELLENIC PHYSICAL SOCIETY WITH THE COOPERATION OF THE PHYSICS DEPARTMENTS OF GREEK UNIVERSITIES: 7th International Conference of the Balkan Physical Union | 2010

Active Tuning Antennas for Wireless Communication

Vasilis Raptis; Giorgos Tatsis; Constantinos I. Votis; Spyridon K. Chronopoulos; Vasilis Christofilakis; Panos Kostarakis

Latest technologies in wireless communications present new challenges on antenna design. Reduced size antennas with self reconfigurable ability are characteristical of smart antennas. This paper presents the practical implementation issues of making an automatic smart antenna tuning system varying the resonant frequency of the antenna using a varactor. The primary parameter for changing varactor’s value is antenna’s VSWR which is monitored by a uC. Additionally, the uC also controls the varactor’s value.


ORGANIZED BY THE HELLENIC PHYSICAL SOCIETY WITH THE COOPERATION OF THE PHYSICS DEPARTMENTS OF GREEK UNIVERSITIES: 7th International Conference of the Balkan Physical Union | 2010

Tuning Techniques for Planar Antennas in Wireless Communication

Vasilis Raptis; Giorgos Tatsis; Constantinos I. Votis; Spyridon K. Chronopoulos; Vasilis Christofilakis; Panos Kostarakis

In modern mobile communication system, low profile antennas capable of broadband operation are required. Nevertheless there is a problem in changing fast and easy the resonant frequency to achieve effective bandwidth. In this paper we examine in particular how an added capacitive load affects the resonant frequency, the VSWR and the current distribution of a Planar antenna. The resonant frequency dependence from the capacitance load is useful parameter for making full self‐tuning antennas.

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C. J. Lolis

University of Ioannina

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C. I. Votis

University of Ioannina

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