This project addresses the need to develop advanced solutions in telecommunication systems by applying fractal theory to antenna design. Technological advancement demands antennas offering greater bandwidth, efficiency, and low cost, overcoming the limitations of current transmission technologies. The proposed solution focuses on the design and construction of Ultra-Wideband (UWB) fractal antennas, which offer key benefits such as miniaturization, robustness, and the ability to operate across multiple resonant frequencies, enabling the coexistence of standards like GSM, Wi-Fi, and Bluetooth in a single device. The methodology involves studying the state of the art, designing and constructing measurement structures and UWB antennas, and implementing metaheuristic algorithms for the iterative optimization of critical parameters such as gain and radiation patterns. The expected impact is significant in the field of Antennas and Propagation, driving research and development of fundamental components for modern communication systems.<br/><br/><b>Goal</b>: <br/>The main objective is to develop laboratory equipment focused on the design, construction, and optimization testing of fractal and ultra-wideband (UWB) antennas. This aims to improve the implementation of services in telecommunications by leveraging the properties of fractal antennas.<br/><br/><b>Research lines</b>: <br/>Telematics