Digital pulse-position modulation (PPM) is attractive to apply in wireless optical-telemetry systems because of its power efficiency. Usually, the bit-error rate is assumed to depend solely on the noise level. The detrimental influence of optical interference is overlooked. In this paper, interference measurements are reported, models that describe interference are presented, and it is shown that the influence of interference can be significant. Further, new rules for system design in the presence of interference are reported. It appears that, compared with the influeuce of noise, the flicker of incandescent lamps is usually negligible, but the flicker of fluorescent lamps is not negligibl
Abstract—Visible light communications (VLC) in indoor envi-ronments suffer from the limited bandwidt...
Based on the atmospheric optical irradiance scintillation channel and an avalanche photodiode detect...
This article presents a study of digital pulse interval modulation (DPIM) for optical wireless commu...
Digital pulse-position modulation (PPM) is attractive to apply in wireless optical-telemetry systems...
In indoor optical wireless communication (OWC) systems, ambient lights in particular fluorescent lam...
We study the effects of artificial (fluorescent) light interference on a dual-header pulse interval ...
Over the past decade, infrared has attracted a considerable amount of interest as an alternative me...
We examine the effects of artificial light interference on optical systems employing dual header pul...
The paper presents the design for an experimental indoor optical wireless (OW) diffuse link using th...
Abstract — On-off keying (OOK) and pulse position modulation (PPM) are widely used modulation format...
Different modulation methods for optical wireless have different power and bandwidth efficiencies. E...
This paper presents a study of digital pulse interval modulation (DPIM) as a candidate modulation sc...
Abstract — In this paper, we examine the use of differential pulse-position modulation (DPPM) for op...
Optical wireless communication systems offer several advantages over their radio frequency counter p...
International Telemetering Conference Proceedings / October 28-31, 1985 / Riviera Hotel, Las Vegas, ...
Abstract—Visible light communications (VLC) in indoor envi-ronments suffer from the limited bandwidt...
Based on the atmospheric optical irradiance scintillation channel and an avalanche photodiode detect...
This article presents a study of digital pulse interval modulation (DPIM) for optical wireless commu...
Digital pulse-position modulation (PPM) is attractive to apply in wireless optical-telemetry systems...
In indoor optical wireless communication (OWC) systems, ambient lights in particular fluorescent lam...
We study the effects of artificial (fluorescent) light interference on a dual-header pulse interval ...
Over the past decade, infrared has attracted a considerable amount of interest as an alternative me...
We examine the effects of artificial light interference on optical systems employing dual header pul...
The paper presents the design for an experimental indoor optical wireless (OW) diffuse link using th...
Abstract — On-off keying (OOK) and pulse position modulation (PPM) are widely used modulation format...
Different modulation methods for optical wireless have different power and bandwidth efficiencies. E...
This paper presents a study of digital pulse interval modulation (DPIM) as a candidate modulation sc...
Abstract — In this paper, we examine the use of differential pulse-position modulation (DPPM) for op...
Optical wireless communication systems offer several advantages over their radio frequency counter p...
International Telemetering Conference Proceedings / October 28-31, 1985 / Riviera Hotel, Las Vegas, ...
Abstract—Visible light communications (VLC) in indoor envi-ronments suffer from the limited bandwidt...
Based on the atmospheric optical irradiance scintillation channel and an avalanche photodiode detect...
This article presents a study of digital pulse interval modulation (DPIM) for optical wireless commu...