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Evaluating a Transmission Power Self-Optimization Technique for WSN in EMI Environments

机译:评估EMI环境下WSN的传输功率自优化技术

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Wireless Sensor Networks (WSNs) can be used to monitor hazardous and inaccessible areas. The WSN is composed of several nodes each provided with its separated power supply, e.g. battery. Working in hardly accessible places it is preferable to assure the adoption of the minimum transmission power in order to prolong as much as possible the WSN’ȁ9;s lifetime. Though, we have to keep in mind that the reliability of the data transmitted represents a crucial requirement. Therefore, power optimization and reliability have become the most important concerns when dealing with modern systems based on WSN. In this context, we propose to evaluate the effectiveness of a Transmission Power Self-Optimization (TPSO) technique for WSNs in an Electromagnetic Interference (EMI) Environment. The TPSO technique consists of an algorithm able to guarantee an equally high Quality of Service (QoS), concentrating on the WSN’ȁ9;s Efficiency (Ef), while optimizing the transmission power necessary for data communication. Thus, the main idea behind our approach is to reach a trade-off between Ef and energy consumption in an environment with inherent noise.
机译:无线传感器网络(WSN)可用于监视危险和不可访问的区域。 WSN由数个节点组成,每个节点都配有独立的电源,例如:电池。在难以接近的地方工作时,最好确保采用最小的传输功率,以尽可能延长WSN的寿命。不过,我们必须记住,传输数据的可靠性是至关重要的要求。因此,在处理基于WSN的现代系统时,功率优化和可靠性已成为最重要的问题。在这种情况下,我们建议评估电磁干扰(EMI)环境中WSN的传输功率自优化(TPSO)技术的有效性。 TPSO技术由一种算法组成,该算法能够保证同等高的服务质量(QoS),并专注于WSN的9效率(Ef),同时优化数据通信所需的传输功率。因此,我们的方法背后的主要思想是在具有固有噪声的环境中在Ef和能耗之间进行权衡。

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