In summer, a blind slat angle of 30° (static angle) or dynamic shading is suitable for an energy efficient and anti-glare control strategy. If there is no need to consider glare, a blind slat angle of 0° or dynamic shading is better in winter, regardless of the building orientation. Building energy consumption is presented according to three building orientations, and 10 control strategies of lighting and shading. In addition, the EnergyPlus program was used for calculation of the annual energy consumption. To prevent disturbing glare and to secure maximum daylight, control strategies of lighting and shading are suggested, related to the E v value. Vertical eye illuminance ( E v) is recommended for the glare index, in place of the DGI or DGP. The measured data from the mock-up room and the scale model were compared, to validate the simulation tool. The Lighting Controls Association is a council of the National Electrical Manufacturers Association that provides education about lighting control technology and application, including articles, videos, design awards, news, resources, and Education Express, a free, 24/7 series of online courses covering everything from technology to design to commissioning. From a single source, drench your space in the widest range of pristine whites and vibrant colors available anywherefrom 1,400K to 10,000Kand dial them in with pinpoint precision to highlight your art or change the mood. We used HDR images captured in real scene and simulation ( DIVA-for-Rhino) for glare evaluation. control of daylight and lighting involves control of electric lighting and blinds. Ketra’s Natural Light Solution can be easily scheduled to match the lighting outdoors, bringing the power of natural light into your home. Or, put another way, it controls how the input data that makes up the Material is used to. And when you go to sleep at night one button can turn off all the lights of in your home or close your shades. Shading Models control how your Material reflects incoming light. This research intends to achieve visual comfort and energy savings in an office building, by means of visual environmental control, and focuses on a quantitative criterion (illuminance), and a qualitative criterion (glare index) in daylighting. DOI: 10.1016/J.BUILDENV.2018.03. When you entertain a single button press on your smart phone or tablet can turn on all the lights in your family and living room areas to a preset dimming level customized to your preferred lighting settings. The objective of this research is to evaluate visual comfort and building energy demand, and suggest lighting and shading control strategies for visual comfort and building energy savings. User interactions over the shading system are excluded at this stage and will be the main focus of a future paper. A lighting control strategy using daylighting is important to reduce energy consumption, and to provide occupants with visual comfort. The control method should propose a solution for at least one of the main objectives, including: (1) visual comfort (daylight, glare and view out), (2) thermal comfort, and (3) energy and/or lighting savings.
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