Nikolay Dimitrov Tashkov is a Professor at Technical University of Gabrovo, Bulgaria, with extensive experience in telecommunications engineering and radio wave technology. He maintains offices in cabinets 2206 and 2213 and teaches Radio Wave Engineering at the bachelor's level. His research spans multiple domains of telecommunications with a particular focus on wireless networks, signal propagation, and broadcast systems. Professor Tashkov's research interests center around telecommunications engineering with specialization in radio wave propagation, wireless communication networks, and digital signal processing. His work examines various modulation techniques including QPSK, 16QAM, and 64QAM, and investigates signal behavior in different environments from urban settings to indoor spaces. He has made significant contributions to understanding radio frequency planning, monitoring systems for broadcast technologies, and the design of wireless networks for both municipal and office environments. His publication record shows a consistent focus on practical applications of telecommunications theory, with recent work analyzing DVB-T systems, IPTV streaming, DAB+ monitoring, and Wi-Fi coverage patterns. The research demonstrates a progression from fundamental radio wave theory to increasingly complex modern communication systems, with particular attention to quality of service metrics and real-world implementation challenges. Professor Tashkov has successfully supervised four PhD students to completion, with research topics including digital modulation format optimization, telecommunication network monitoring and control, radio frequency planning, and digital modulation schemes in wireless communications. His research has been supported by seven completed projects, including both internal university projects and external collaborations like the BG051 project supporting scientific personnel growth in engineering sciences. His laboratory work appears focused on practical telecommunications systems, with publications covering RF monitoring equipment, signal analysis tools, and network design methodologies. The research infrastructure likely includes facilities for testing wireless networks, broadcast systems, and signal processing equipment, though specific laboratory names are not mentioned in the available documentation.








