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Concept of Low-Power Sensor Network Module for Diagnostic of Stomach Diseases in Cows

机译:低功率传感器网络模块,用于诊断母牛的胃病的概念

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This paper presents the stages of developing a power supply system for a probe placed in the stomach of a cow. The power supply system is based on Triboelectric affect. To evaluate the operation, a triboelectric nano generator was built. The triboelectric nano generator has been tested in three different ways. Work at low frequency, work at high frequency and work at high frequency with a connected energy storage. At the next stage, it was necessary to conduct motion tests to obtain information about the mechanical energy produced by a cow or other individual. To do this, a measuring device was built and tested, tests included measuring the duration of work in a wide temperature range and under strong mechanical stresses, were carried out for six weeks. To obtain vibration data, the device was mounted on the human body. Data was taken during the day. The measured data were used for the average energy produced by a person's movement during the day. As a result, it was stated that in order to obtain the necessary power for supplying the probe, it is necessary to produce a triboelectric nano generator with a total surface area of 2.5 [sq. m.]. Which is realistic using nanostructures.
机译:本文介绍了开发用于放置在牛胃中的探针的电源系统的各个阶段。电源系统基于摩擦电影响。为了评估操作,构建了摩擦电纳米发电机。摩擦电纳米发生器已经通过三种不同的方式进行了测试。低频工作,高频工作和带有连接的储能器的高频工作。在下一阶段,有必要进行运动测试以获取有关母牛或其他个体产生的机械能的信息。为此,制造并测试了一个测量设备,测试包括在宽温度范围内和强机械应力下测量工作时间,进行了六周。为了获得振动数据,将设备安装在人体上。数据是在白天获取的。测得的数据用于一天中某人的运动产生的平均能量。结果,有人指出,为了获得供应探针所需的功率,有必要生产总表面积为2.5 [sq.cm2]的摩擦电纳米发生器。 m。]。使用纳米结构是现实的。

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