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Optimized MPPT-based converter for TEG energy harvester to power wireless sensor and monitoring system in nuclear power plant

机译:基于MPPT的优化转换器,用于TEG能量采集器,为核电站的无线传感器和监控系统供电

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Accidents like Fukushima Disasters push people to improve the monitoring systems for the nuclear power plants. Thus, various types of energy harvesters are designed to power these systems and the Thermoelectric Generator (TEG) energy harvester is one of them. In order to enhance the amount of harvested power and the system efficiency, the power management stage needs to be carefully designed. In this paper, a power converter with optimized Maximum Power Point Tracking (MPPT) is proposed for the TEG Energy Harvester to power the wireless sensor network in nuclear power plant. The TEG Energy Harvester is installed on the coolant pipe of the nuclear plant and harvests energy from its heat energy while the power converter with optimized MPPT can make the TEG Energy Harvester output the maximum power, quickly response to the voltage change and provide sufficient energy for wireless sensor system to monitor the operation of the nuclear power plant. Due to the special characteristics of the Single-Ended Primary Inductor Converter (SEPIC) when it is working in the Discontinuous Inductor Current Mode (DICM) and Continuous Conduction Mode (CCM), the MPPT method presented in this paper would be able to control the converter to achieve the maximum output power in any working conditions of the TEG system with a simple circuit. The optimized MPPT algorithm will significantly reduce the cost and simplify the system as well as achieve a good performance. Experiment test results have shown that, comparing to a fixed-duty-cycle SEPIC which is specifically designed for the working on the secondary coolant loop in nuclear power plant, the optimized MPPT algorithm increased the output power by 55%.
机译:福岛灾难等事故迫使人们改善核电站的监控系统。因此,设计了各种类型的能量收集器来为这些系统提供动力,而热电发电机(TEG)能量收集器就是其中之一。为了提高收集的电量和系统效率,需要仔细设计电源管理阶段。本文为TEG能量采集器提出了一种具有优化的最大功率点跟踪(MPPT)的功率转换器,以为核电站的无线传感器网络供电。 TEG能量收集器安装在核电站的冷却剂管道上,并从其热能中收集能量,而具有优化MPPT的功率转换器可使TEG能量收集器输出最大功率,快速响应电压变化并为无线传感器系统监视核电站的运行。由于单端初级电感转换器(SEPIC)在不连续电感器电流模式(DICM)和连续导通模式(CCM)下工作时的特殊特性,本文介绍的MPPT方法将能够控制转换器,通过简单的电路即可在TEG系统的任何工作条件下实现最大输出功率。优化的MPPT算法将大大降低成本,简化系统并获得良好的性能。实验测试结果表明,与专门设计用于核电站二次冷却剂回路的固定占空比SEPIC相比,优化的MPPT算法将输出功率提高了55%。

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