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Inference algorithm based wireless and pyroelectric sensory fusion system for indoor human/robot localization and monitoring

机译:基于推理算法的无线和热释电传感器融合系统,用于室内人/机器人的定位与监控

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Indoor monitoring system for robot and human is an important issue in robotics research. In this study, we propose an indoor monitoring system based on wireless and pyroelectric infrared (WPIR) sensory fusion system. Pyroelectric infrared (PIR) system alone for localization provides less accurate information of human location and suffers from multiple targets localization. Furthermore, radio frequency (RF) localization system alone is also constrained by its limited accuracy. We develop a sensor network based localization method called WPIR inference algorithm. This algorithm determine the fused position from both PIR localization system and radio frequency signal localization system which utilizes received signal strength (RSS) model. We have developed and experimentally demonstrated a WPIR sensory fusion system which can be applied in localizing targets, such as human and robot. With the proper localization mechanism in the indoor environment, the provision of appropriate services for people can be realized with less expensive cost.
机译:机器人与人的室内监控系统是机器人技术研究的重要课题。在这项研究中,我们提出了一种基于无线和热释电红外(WPIR)感官融合系统的室内监控系统。单独用于定位的热释电红外(PIR)系统提供的人类定位信息不太准确,并且遭受多个目标定位的困扰。此外,单独的射频(RF)定位系统也受到其有限精度的限制。我们开发了一种基于传感器网络的定位方法,称为WPIR推理算法。该算法从PIR定位系统和利用接收信号强度(RSS)模型的射频信号定位系统中确定融合位置。我们已经开发并实验证明了WPIR感官融合系统,该系统可用于定位目标,例如人和机器人。通过在室内环境中使用适当的定位机制,可以以较低的成本实现为人们提供适当的服务。

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