Title :
Closed-loop smart antenna systems with controllable metamaterial lattice interactions
Author :
Mitra, Atindra ; Hu, Colin ; Johnson, Connor
Author_Institution :
Air Force Res. Lab., Dayton, OH, USA
Abstract :
This paper provides an introductory discussion and sample preliminary results on a new metamaterial-based smart antenna concept. This new antenna concept is based on controlling closed-loop interactions between printed slot microstrip patterns and a variety of lattice substrate structures. These type of interactions are controlled via the integration of controllable active devices within a set of microstrip antenna geometries that are under consideration. The resulting antenna technology enables the real-time configuration of antenna systems that transmit multiple programmable tones across large percentage bandwidths. The control philosophy is based on specifying a desired spectrum within the system memory and then iteratively sequencing through a series of programmable modes on the antenna-integrated substrate devices to achieve convergence to the desired spectrum.
Keywords :
adaptive antenna arrays; metamaterials; microstrip antenna arrays; slot antenna arrays; antenna-integrated substrate devices; closed-loop smart antenna systems; control philosophy; controllable metamaterial lattice interactions; lattice substrate structures; microstrip antenna geometries; multiple programmable tones; printed slot microstrip patterns; programmable modes; Fractals; Metamaterials; Microstrip antennas; Substrates; Associative Learning; Electromagnetic Simulation; Metamaterials; RF Simulation; Reconfigurable Antennas; Smart Antennas;
Conference_Titel :
Aerospace and Electronics Conference (NAECON), Proceedings of the IEEE 2010 National
Conference_Location :
Fairborn, OH
Print_ISBN :
978-1-4244-6576-7
DOI :
10.1109/NAECON.2010.5712957