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Dynamic Modeling and Simulation of a Thermoelectric-Solar Hybrid Energy System Using an Inverse Dynamic Analysis Input Shaper

机译:使用逆动态分析输入整形器的热电-太阳能混合能源系统的动力学建模和仿真

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This study presents the behavioral model of thermal temperature and power generation of a thermoelectric-solar hybrid energy system exposed to dynamic transient sources. In the development of thermoelectric-solar hybrid energy system, studies have focused on the regulation of both systems separately. In practice, a separate control system affects hardware pricing. In this study, an inverse dynamic analysis shaping technique based on exponential function is applied to a solar array (SA) to stabilize output voltage before this technique is combined with a thermoelectric module (TEM). This method can be used to estimate the maximum power point of the hybrid system by initially shaping the input voltage of SA. The behavior of the overall system can be estimated by controlling the behavior of SA, such that SA can follow the output voltage of TEM as the time constant of TEM is greater than that of SA. Moreover, by employing a continuous and differentiable function, the acquired output behavior of the hybrid system can be attained. Data showing the model is obtained from current experiments with predicted values of temperature, internal resistance, and current attributes of TEM. The simulation results show that the proposed input shaper can be used to trigger the output voltage of SA to follow the TEM behavior under transient conditions.
机译:这项研究提出了暴露于动态瞬变源的热电太阳能混合能源系统的热温度和发电行为模型。在热电-太阳能混合能源系统的开发中,研究集中在分别调节两个系统上。实际上,单独的控制系统会影响硬件价格。在这项研究中,将基于指数函数的逆动态分析整形技术应用于太阳能电池阵列(SA),以在将其与热电模块(TEM)结合之前稳定输出电压。通过最初对SA的输入电压进行整形,可以将该方法用于估计混合动力系统的最大功率点。可以通过控制SA的行为来估计整个系统的行为,以便当TEM的时间常数大于SA的时间常数时,SA可以跟随TEM的输出电压。此外,通过采用连续且可微的函数,可以获得混合动力系统的获取的输出行为。显示模型的数据是从具有温度,内部电阻和TEM电流属性的预测值的当前实验中获得的。仿真结果表明,所提出的输入整形器可以在瞬态条件下触发SA的输出电压,以遵循TEM行为。

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