X – Ray Diffraction Laser THERMO LOGG Contact Angle Analyzer Langmuir – Blodgett Film Deposition Scanning Electron Microscope with EDS (X-ray spectrometry) Small Angle X-Ray Scattering Apparatus Wide Angle X-Ray Scattering Apparatus Mercury Porosimeter Mass Spectrometer Nitrogen Porosimeter ultra-microtome AA GC-MS Scanning Electron Microscope with EDS (X-ray spectrometry) Proteome analysis [Proteomics] Remote Measurement System Transmission Electron Microscope CNC ΑGIECharmilles ΑCTSPARK FW-1P [CNC AGIE] CNC DMG CTX 510 Eco PHOTRON FASTACAM SA3 INSTRON 8801 Testing Device ROMER OMEGA R-SCAN & 3D RESHAPER LASER Cutter Pantograph with extra PLASMA torch CNC ΙDA XL 1200 Optical and Contact Coordinate Measuring Machine TESA MICRO-HITE 3D  RSV-150 Remote Sensing Vibrometer Ground Penetration Radar [GPR] Audio Magneto Telluric Optical Time Domain Reflectometers [OTDR] Non ion Rad Electric e-mat analysis Thermogravimetric Analyzers - Differential Scanning Calorimetry Magnetron Deposition Metal Deposition Grid Computing Center

Kalathas Ioannis born in Athens in 1984. He received the B.Eng. degree in Electrical Engineering from Kavala Institute of Technology, Greece, in 2011. The Bachelor thesis was “RADAR Techniques about interference, silence, position finding using GRS, lightning protection, instant ionization, guided repel lightning”. The period 2009 – 2012 studied networks at Cisco Networking Academy. The period 2014 - 2015 did an M. Sc. in “Innovation in Technology and Entrepreneurship” in Eastern Macedonia and Thrace Institute of Technology, established by Electrical Engineering department. His Master Dissertation Thesis was “Application of Grid Network To The Management Of Energy Resources Of Municipality Of Kavala”. His current research interests lie on network and hardware administration, as well as sensors and sensor networks.

Kosmidis Alexander born in Kavala in 1984. He graduated from 2002 to 2008 Department of Agricultural Development in Dimokriteio University of Thrace. The degree dissertation was “Potato viruses in Greece”. September 2008 – October2009 he worked with a main occupation the records of producers for certification Agro 2.1-2.2 and GlobalGap, as well as the sale of Plant Protection Products. 2011 he did seminars “Food Safety Management System Auditor/Lead Auditor”, “Application Development and Certification Integrated Management Systems According to Standards Agro 2.1 – 2.2 and Globalgap”. Since 2013 he has been working in a non-governmental organization, “Pnoi” Association for the child and the family as an agronomist. The period 2014 - 2015 did M.Sc. in “Innovation in Technology and Entrepreneurship” in Eastern Macedonia and Thrace Institute of Technology, School of technological engineering. The master dissertation was the construction of a home heated seedbed, ie anyone can produce seedlings in his home with controlled temperature and then to cultivate his own garden.

Kanakaris Venetis

Kanakaris Venetis

Researcher

Kosmidis Alexander

Kosmidis Alexander 

Researcher

Kalathas Ioannis

Researcher

Dr. Venetis Kanakaris was born in Komotini, Greece. He received the B.Eng. degree in Electronic Engineering from Lamia Technical University, Greece, the B.Eng. degree in Electrical Engineering from Kavala Technical University, Greece, in 2004, and the M.Sc. degree in Telecommunications and Technologies from Technical University of Gabrovo, Bulgaria, in 2006. Also, received his PhD from University of Portsmouth in 2012, U.K. as well as the M.Ed. from Open University of Greece in 2013. Since October of 2016, is adjunct Lecturer at Eastern Macedonia and Thrace Institute of Technology, Dept. of Electrical Engineering, Kavala, Greece. His current research interests lie in energy ad hoc routing protocols and low-power underwater wireless sensor protocol architectures.

Nowadays, the use of wireless sensor network in providing decision support systems has solved many problems in the real world. This research focuses on solving the problems of agriculture, associated with the optimization of resources, decision support and seed breeding monitoring. This study provides information in real time on the seedbed while help users make the right decisions during seed breeding process. The implemented automation system monitor data from sensors in a feedback loop which activates the control devices based on threshold values. The implementation of this monitoring system will optimize the control of air temperature and humidity, soil moisture, air capacity, brightness while minimizing the time of seed breeding and will maximize the number of seeds that are ready plants for transplanting.