Indoor diffuse optical intensity channels are bandwidth constrained due to the multiple reflected paths between the transmitter and the receiver which cause considerable inter-symbol interference (ISI). The transmitted signal amplitude is inherently non-negative, being a light intensity signal. All optical intensity root Nyquist pulses are time-limited to a single symbol interval which eliminates the possibility of finding bandlimited root Nyquist pulses. However, potential exists to design bandwidth efficient pulses. This paper investigates the modified hermite polynomial functions and prolate spheroidal wave functions as candidate waveforms for designing spectrally efficient optical pulses. These functions yield orthogonal pulses which ha...
A novel and simple non-coherent method to demultiplex WDM and orthogonal TDM Nyquist signal is prese...
A novel family of inter-symbol interference (ISI) free pulses generated by improved Nyquist filters ...
A new waveform design which simultaneously compresses bandwidth and suppresses out-of-band power lea...
Indoor diffuse optical intensity channels are bandwidth constrained due to the multiple reflected pa...
Faster than Nyquist signaling increases the spectral efficiency of pulse amplitude modulation by acc...
Sinc-shaped Nyquist pulses possess a rectangular spectrum, enabling data to be encoded in a minimum ...
In this paper, the design and analysis of a new bandwidth-efficient signalling method over the bandl...
Sinc-shaped Nyquist-pulses possess a rectangular spectrum. Thus, a sinc-pulse transmission minimizes...
This paper proposes and experimentally demonstrates, for the first time, two new candidate pulse sha...
In this paper, the design and analysis of a new bandwidth-efficient signaling method over the bandli...
In this paper, a new method for power-efficient intersymbol interference-free transmission over the ...
Using optical fiber amplification and phase modulation, we demonstrate experimentally the generation...
High-quality optical sinc-shaped Nyquist pulses with a virtual zero roll-off factor are obtained fro...
Abstract—We present three novel Nyquist (intersymbol inter-ference free) pulses that outperform two ...
Growing request for wideband communications requires innovation in power efficiency and signal proce...
A novel and simple non-coherent method to demultiplex WDM and orthogonal TDM Nyquist signal is prese...
A novel family of inter-symbol interference (ISI) free pulses generated by improved Nyquist filters ...
A new waveform design which simultaneously compresses bandwidth and suppresses out-of-band power lea...
Indoor diffuse optical intensity channels are bandwidth constrained due to the multiple reflected pa...
Faster than Nyquist signaling increases the spectral efficiency of pulse amplitude modulation by acc...
Sinc-shaped Nyquist pulses possess a rectangular spectrum, enabling data to be encoded in a minimum ...
In this paper, the design and analysis of a new bandwidth-efficient signalling method over the bandl...
Sinc-shaped Nyquist-pulses possess a rectangular spectrum. Thus, a sinc-pulse transmission minimizes...
This paper proposes and experimentally demonstrates, for the first time, two new candidate pulse sha...
In this paper, the design and analysis of a new bandwidth-efficient signaling method over the bandli...
In this paper, a new method for power-efficient intersymbol interference-free transmission over the ...
Using optical fiber amplification and phase modulation, we demonstrate experimentally the generation...
High-quality optical sinc-shaped Nyquist pulses with a virtual zero roll-off factor are obtained fro...
Abstract—We present three novel Nyquist (intersymbol inter-ference free) pulses that outperform two ...
Growing request for wideband communications requires innovation in power efficiency and signal proce...
A novel and simple non-coherent method to demultiplex WDM and orthogonal TDM Nyquist signal is prese...
A novel family of inter-symbol interference (ISI) free pulses generated by improved Nyquist filters ...
A new waveform design which simultaneously compresses bandwidth and suppresses out-of-band power lea...