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Energy-saving strategies for luminaire-level lighting controls

机译:灯具级照明控制的节能策略

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Luminaire-level lighting controls (LLLCs), also called luminaire-integrated controls, have the potential to reduce energy use, compared with traditional zone controls, when used in an open office setting. Additionally, LLLCs can be installed without incurring the additional costs associated with the installation of connected lighting. Due to this potential for both cost and energy savings, the Lighting Research Center (LRC) at Rensselaer Polytechnic Institute conducted a study to determine how various parameters affect the energy savings of LLLCs. The investigated parameters were: field of view of the built-in motion sensor, delay time between when the last occupancy is detected and when the luminaire is turned off or dimmed, number of luminaires that turn on and off together in groups, and if the luminaires dim to a low level or turn off completely when no motion is detected. This study measured the occupancy pattern of an open office and then used that data in a computer simulation to determine energy use. The results show that LLLCs have significant energy savings potential in open offices with a 43% average energy reduction compared with the calculated manual-control base case. Results also show that choices made during LLLC selection (e.g., sensor field of view) and commissioning (e.g., delay time, grouping, dimming vs. turning off during vacancy) significantly impact potential energy savings. However, selecting LLLC products and settings for maximum energy savings can adversely impact occupant satisfaction. Lighting designers and specifiers should balance energy targets with the needs of occupants, including safety, comfort, health, visibility and wellbeing.
机译:当在开放式办公室环境中使用时,与传统区域控制相比,灯具级别的照明控制(LLLC)也称为照明器集成控制,具有减少能耗的潜力。此外,可以安装LLLC,而不会产生与安装连接的照明设备相关的额外费用。由于具有节省成本和节能的潜力,伦斯勒理工学院的照明研究中心(LRC)进行了一项研究,以确定各种参数如何影响LLLC的节能。研究的参数包括:内置运动传感器的视野,检测到最后一次占用与照明设备关闭或变暗之间的延迟时间,成组一起打开和关闭的照明设备的数量以及是否当未检测到运动时,照明灯会变暗或完全关闭。这项研究测量了一个开放式办公室的占用模式,然后在计算机模拟中使用该数据来确定能耗。结果表明,与计算的手动控制基本案例相比,LLLC在开放式办公室中具有显着的节能潜力,平均能耗降低了43%。结果还表明,在LLLC选择(例如传感器视野)和调试(例如延迟时间,分组,调光与空置期间关闭)期间做出的选择会显着影响潜在的节能效果。但是,选择LLLC产品和设置以最大程度地节省能源会对乘员的满意度产生不利影响。照明设计师和指定者应在能源目标与乘员的需求之间取得平衡,包括安全,舒适,健康,能见度和福祉。

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