Invention Grant
- Patent Title: Systems and methods for spectrally efficient and energy efficient ultra-wideband impulse radios and scalable data rates
-
Application No.: US15578478Application Date: 2016-05-31
-
Publication No.: US10608699B2Publication Date: 2020-03-31
- Inventor: Frederic Nabki , Dominic Deslandes , Mohammad Taherzadeh-Sani , Michiel Soer
- Applicant: TRANSFERT PLUS SOCIETE EN COMMANDITE
- Applicant Address: CA Montreal, Quebec
- Assignee: Transfert Plus Societe en Commandite
- Current Assignee: Transfert Plus Societe en Commandite
- Current Assignee Address: CA Montreal, Quebec
- Agency: Rosenberg, Klein & Lee
- International Application: PCT/CA2016/000161 WO 20160531
- International Announcement: WO2016/191851 WO 20161208
- Main IPC: H04B1/717
- IPC: H04B1/717 ; H04L7/00 ; H04B1/16 ; H04B1/3827 ; H04L25/49 ; H04L27/22 ; H04L25/00 ; H04B1/7183 ; H04L7/033 ; H04L25/03

Abstract:
Ultra-Wideband (UWB) technology exploits modulated coded impulses over a wide frequency spectrum with very low power over a short distance for digital data transmission. Today's leading edge modulated sinusoidal wave wireless communication standards and systems achieve power efficiencies of 50 nJ/bit employing narrowband signaling schemes and traditional RF transceiver architectures. However, such designs severely limit the achievable energy efficiency, especially at lower data rates such as below 1 Mbps. Further, it is important that peak power consumption is supportable by common battery or energy harvesting technologies and long term power consumption neither leads to limited battery lifetimes or an inability for alternate energy sources to sustain them. Accordingly, it would be beneficial for next generation applications to exploit inventive transceiver structures and communication schemes in order to achieve the sub nJ per bit energy efficiencies required by next generation applications.
Public/Granted literature
Information query