In this work we propose an orthogonal pulse waveform for wireless ultra wideband (UWB) transmission. The design is based on an ideal low-pass prototype filter having a windowed sinc impulse response. The frequency response of the prototype filter is transferred to the high frequency region using a specific sign modulator. The UWB pulse waveform comprises of the weighted summation of the left singular vectors of the impulse response matrix. The power spectral density of the pulse waveform fulfils the FCC constraint (allowed frequency band 3.1-10.6 GHz) for unlicensed UWB transmission. Applications of the UWB pulse waveform in multi-channel wireless sensor networks are considered
In this study, a novel Ultra Wideband (UWB) pulse generator design for single- and multi-user syst...
With several GHz spectra available worldwide, the 60 GHz unlicensed band seems being able to solve t...
An impulse radio ultra wideband (IR-UWB) pulse generator works between 5.5-10.5 GHz for narrowband i...
In this work we propose an orthogonal pulse waveform for wireless ultra wideband (UWB) transmission....
Ultra-wideband impulse radio (UWB-IR) sensors should comply entirely with the regulatory spectral li...
With transmit power spectra strictly limited by regulatory spectral masks, the emerging ultra-wideba...
Pulse shaping in Ultra-Wide Band (UWB) networks based on Impulse Radio (IR) is a viable way for adap...
With technological advances in the field of communication, the need for reliable high-speed data tra...
Time hopping ultra wideband (TH-UWB) communication promises to be a viable technique to build a rela...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Ultra Wide Band (UWB) is based on the transmission of very short pulses with relatively low energy. ...
Current ultra-wideband communication systems use short narrow timed pulse sequences to transmit info...
Recently ultra-wideband (UWB) communications has emerged as an alternative to narrowband communicati...
Pulse position modulation (PPM) and rake receive are usually used in single-band ultra-wideband (SB-...
Ultra-Wideband (UWB) technology is a wireless transmission scheme that occupies a bandwidth of more ...
In this study, a novel Ultra Wideband (UWB) pulse generator design for single- and multi-user syst...
With several GHz spectra available worldwide, the 60 GHz unlicensed band seems being able to solve t...
An impulse radio ultra wideband (IR-UWB) pulse generator works between 5.5-10.5 GHz for narrowband i...
In this work we propose an orthogonal pulse waveform for wireless ultra wideband (UWB) transmission....
Ultra-wideband impulse radio (UWB-IR) sensors should comply entirely with the regulatory spectral li...
With transmit power spectra strictly limited by regulatory spectral masks, the emerging ultra-wideba...
Pulse shaping in Ultra-Wide Band (UWB) networks based on Impulse Radio (IR) is a viable way for adap...
With technological advances in the field of communication, the need for reliable high-speed data tra...
Time hopping ultra wideband (TH-UWB) communication promises to be a viable technique to build a rela...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Ultra Wide Band (UWB) is based on the transmission of very short pulses with relatively low energy. ...
Current ultra-wideband communication systems use short narrow timed pulse sequences to transmit info...
Recently ultra-wideband (UWB) communications has emerged as an alternative to narrowband communicati...
Pulse position modulation (PPM) and rake receive are usually used in single-band ultra-wideband (SB-...
Ultra-Wideband (UWB) technology is a wireless transmission scheme that occupies a bandwidth of more ...
In this study, a novel Ultra Wideband (UWB) pulse generator design for single- and multi-user syst...
With several GHz spectra available worldwide, the 60 GHz unlicensed band seems being able to solve t...
An impulse radio ultra wideband (IR-UWB) pulse generator works between 5.5-10.5 GHz for narrowband i...