Standard observer watts: Evaluating the efficiency of circadian-effective luminaires using a standard observer methodology

Author:

Rea MS1ORCID,Bierman A1,Thayer A1,Jarboe C1,Figueiro M1ORCID

Affiliation:

1. Light and Health Research Center, Icahn School of Medicine at Mount Sinai, New York, NY, USA

Abstract

The daily timings of our behavioural activities and physiological functions are regulated by the master biological clock in the brain. Disruption of these circadian rhythms can lead to poor performance and poor health. Consistent exposure to bright days and dim nights is necessary for circadian entrainment and, thus, for good sleep and good health. Since we spend most of our lives indoors, we often must rely on electric lighting for circadian entrainment. Surprisingly perhaps, current lighting practice does not purposely support circadian entrainment. A perceived barrier to promoting circadian entrainment with electric lighting is the absence of a standard test method for assessing the efficiency of luminaires for providing circadian-effective light to building occupants. Proposed is a measure for quantifying luminaire efficiency based on the electric power (watts) needed to reach the circadian stimulus criterion (CS = 0.3) at the eyes of a standard observer, termed Standard Observer Watts (SOWatt). The present paper describes how SOWatt can be applied to ceiling mounted, accent and table-top luminaires.

Publisher

SAGE Publications

Subject

Electrical and Electronic Engineering

Reference23 articles.

1. United States Environmental Protection Agency. Model year 2008–2012 fuel economy label. https://19january2017snapshot.epa.gov/fuel-economy/model-year-2008-2012-fuel-economy-label_.html

2. International WELL Building Institute. WELL v2™. https://v2.wellcertified.com/v/en/overview

3. Lighting in the Home and Health: A Systematic Review

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