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Web Accessible Security Camera System Independently Powered by a Point of Use Thermoelectric Generator Using Geothermal Pipes as a Heat Source

机译:Web访问安全摄像头系统,由使用地热管作为热源的使用点热电发电机独立供电

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This paper presents the implementation of a thermoelectric-based point of use power generation system with no moving parts to power a web interfaced video surveillance system. The generator can be clamped onto the outer wall of a geothermal steam or hot water pipe and was successfully tested in temperatures up to 160°C. A test bed at the Cooper Union in New York City was used to evaluate different ambient and working fluid temperatures. The thermoelectric generator was attached to a steam pipe at 160°C and was used to power two microcontroller based security cameras, one with wireless LAN and another with cellular connectivity. Additional testing of the PV voltage controller and the generator occurred in Iceland using a 100-120°C geothermal waste steam condensate pipe. The results show that the system can be used to run low power surveillance systems. Because the security system can operate without grid access, it will run constantly, and hence improve security. The unit's power generation is directly dependent on the temperature difference between the heat source and the ambient. This temperature difference becomes greater in colder climates such as in Iceland. The system presented in this paper thrives in colder climates that can severely impede the performance of traditional battery systems.
机译:本文介绍了一种基于热电的使用点发电系统的实现,该系统没有移动部件即可为网络界面视频监控系统供电。该发生器可以固定在地热蒸汽或热水管的外壁上,并已成功在高达160°C的温度下进行了测试。纽约市库珀联盟的测试台用于评估不同的环境温度和工作流体温度。该热电发电机安装在160°C的蒸汽管上,用于为两台基于微控制器的安全摄像机供电,一台具有无线局域网,另一台具有蜂窝连接能力。在冰岛,使用100-120°C的地热废蒸汽冷凝管对PV电压控制器和发电机进行了其他测试。结果表明,该系统可用于运行低功耗监视系统。由于安全系统可以在没有网格访问的情况下运行,因此它将持续运行,从而提高了安全性。设备的发电量直接取决于热源与周围环境之间的温差。在较冷的气候下,例如在冰岛,该温度差变得更大。本文介绍的系统在寒冷的气候中壮成长,这可能严重阻碍传统电池系统的性能。

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