首页> 外文会议>ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems >A NOVEL CHOPPED PYROELECTRIC INFRARED SENSOR FOR DETECTING THE PRESENCE OF STATIONARY AND MOVING OCCUPANTS
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A NOVEL CHOPPED PYROELECTRIC INFRARED SENSOR FOR DETECTING THE PRESENCE OF STATIONARY AND MOVING OCCUPANTS

机译:一种新型切碎的热红外红外传感器,用于检测静止和移动乘员的存在

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Owing to the unique features of passive sensing, low cost, large detection range and wide field of view (FOV), the pyroelectric infrared (PIR) sensors are widely used for smart home applications based on motion detection, such as light control, intrusion detection. However, due to the pyroelectricity on which their sensing principles are based, PIR sensors cannot detect stationary objects, which confines their applications to advanced sensing systems, e.g. stationary occupancy sensing. To address this issue, this paper develops a novel chopped PIR (C-PIR) sensor for detecting the presence of both moving and stationary occupants, which consists of a chopper, a servo motor, a Fresnel lens, PIR sensing elements and a controller. Theoretical analysis is conducted to reveal the working principles of the proposed C-PIR sensor. A prototype of the C-PIR sensor is fabricated and experiments are conducted to find the optimal option of the chopper material, and the optimal values of the thickness, and the chopping frequency. Results show that the proposed C-PIR sensor can sense human presence no matter if the occupant is moving or not. In experiments, the preliminary prototype shows its detection range up to 4.0 m for stationary occupant sensing and 8.5 m for moving occupant sensing. Meanwhile, the C-PIR sensor maintains the same performance of the field of view as its traditional PIR sensor counterpart. Thus, the C-PIR sensor has great potential to provide accurate occupancy information for smart building energy management.
机译:由于被动传感的独特特征,低成本,检测范围大的宽视野(FOV),热电红外(PIR)传感器广泛用于基于运动检测的智能家居应用,例如光控制,入侵检测。然而,由于其传感原则所在的热电性,PIR传感器无法检测到静止物体,这将其应用限制在先进的传感系统中,例如,固定占用感应。为了解决这个问题,本文开发了一种新型切碎的PIR(C-PIR)传感器,用于检测移动和静止乘员的存在,其包括斩波器,伺服电机,菲涅耳透镜,PIR传感元件和控制器。进行理论分析以揭示所提出的C-PIR传感器的工作原理。制造了C-PIR传感器的原型,并进行了实验以找到斩波材料的最佳选择,以及厚度的最佳值,以及斩波频率。结果表明,如果乘员正在移动,所提出的C-PIR传感器可以感知人类存在。在实验中,初步原型显示其检测范围高达4.0米,用于固定乘员感应和8.5米,用于移动乘员感测。同时,C-PIR传感器保持与其传统PIR传感器对应的视野相同的性能。因此,C-PIR传感器具有很大的潜力,可以为智能建筑能源管理提供准确的占用信息。

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