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Technology options for DSM in interior lighting

机译:DSM室内照明的技术选择

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The objective of this paper is to educate the reader on the criteria to appraise overall energy efficiency of lighting systems and to provide guidelines for identifying energy saving options in lighting. The scope of this paper is limited to interior lighting installations like commercial buildings and industrial buildings. The methodology described in this paper helps to understand energy efficiency as referred to light sources, interior lighting design and performance assessment indicators. Luminous efficacy indicates energy efficiency of light sources, but it is not the parameter based on which quality of a lighting application is decided, for deciding quality, color rendering capability of a light source important and can be determined from its spectral properties. Hence its important to understand to assess a light source for its quality implications; this paper helps the user to do quality assessment of light sources. Lighting on the work plane in an interior depends on optical efficiency of luminaires, room dimensions and their surface reflectance. The idea of energy efficient lighting design is to provide highest luminous efficacy on the work plane by making use of efficient luminaire, room reflectance, mounting height and least lighting power consumption. Illuminating non-task areas is as critical as task areas so that there is enough luminance distribution in the background to aid in eye adaptation, safety and circulation. A energy efficient lighting interior is the best technology option for demand side management, thereby end user is encouraged to adopt way means reducing energy costs and improving lighting quality.
机译:本文的目的是教育读者对评估照明系统的整体能源效率的标准,并提供识别照明中节能选项的指导方针。本文的范围仅限于商业建筑和工业建筑等室内照明装置。本文中描述的方法有助于了解光源,室内照明设计和性能评估指标的能效。发光功效表示光源的能量效率,但是对于确定光源的光源的颜色渲染能力来决定照明应用的质量的基于哪个参数,可以从其光谱特性确定。因此,了解评估其质量意义的光源很重要;本文有助于用户对光源进行质量评估。在内部的工作平面上照明取决于照明器,房间尺寸和表面反射的光学效率。节能照明设计的概念是通过利用高效的灯具,室内反射率,安装高度和最小照明功耗来提供工作平面上的最高发光效率。照明非任务领域与任务领域具有至关重要的是,背景中有足够的亮度分布,以帮助眼睛适应,安全和循环。节能照明内部是需求侧管理的最佳技术选择,从而鼓励最终用户采用方式意味着降低能源成本并提高照明质量。

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