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Telecommunication Platforms for Transmitting Sensor Data over Communication Networks—State of the Art and Challenges

机译:通过通信网络传输传感器数据的电信平台—最新技术和挑战

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The importance of constructing wide-area sensor networks for holistic environmental state evaluation has been demonstrated. A general structure of such a network has been presented with distinction of three segments: local (based on ZigBee, Ethernet and ModBus techniques), core (base on cellular technologies) and the storage/application. The implementation of these techniques requires knowledge of their technical limitations and electromagnetic compatibility issues. The former refer to ZigBee performance degradation in multi-hop transmission, whereas the latter are associated with the common electromagnetic spectrum sharing with other existing technologies or with undesired radiated emissions generated by the radio modules of the sensor network. In many cases, it is also necessary to provide a measurement station with autonomous energy source, such as solar. As stems from measurements of the energetic efficiency of these sources, one should apply them with care and perform detailed power budget since their real performance may turn out to be far from expected. This, in turn, may negatively affect—in particular—the operation of chemical sensors implemented in the network as they often require additional heating.
机译:已经证明了构建用于整体环境状态评估的广域传感器网络的重要性。已经提出了这样的网络的一般结构,其分为三个部分:本地(基于ZigBee,以太网和ModBus技术),核心(基于蜂窝技术)和存储/应用。这些技术的实现需要了解其技术局限性和电磁兼容性问题。前者指的是多跳传输中ZigBee的性能下降,而后者指的是与其他现有技术共享的常见电磁频谱或传感器网络的无线电模块产生的不希望有的辐射。在许多情况下,还必须为测量站提供自主能源,例如太阳能。由于对这些能源的能量效率进行了测量,因此应谨慎应用它们并执行详细的功率预算,因为它们的实际性能可能远远超出预期。反过来,这可能会对网络中实现的化学传感器的运行产生负面影响,尤其是这些传感器经常需要额外加热的情况。

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