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Methodology to Obtain the Voltage-Dependent Parameters of a Fourth-Order Supercapacitor Model With the Transient Response to Current Pulses

机译:具有对电流脉冲的瞬态响应的四阶超级电容器模型的电压相关参数的方法

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摘要

In order to design power circuits including supercapacitors, a model that responds as closely as possible to results in actual tests, in both fast and slow transients, is required. The network of the parallel RC branches model is widely used to justify the electrical behavior of supercapacitors. In that model, in order to achieve a good fitting between simulation and actual transient responses, the interdependence among the parameters, as well as their voltage dependence, must be considered. This study presents a method to deduce the parameters of the RC network model through the transient response of the supercapacitor including theirs voltage dependence. The methodology considers that the electrical charge provided to the device in the current pulses is not only injected in the fastest branch, but also is simultaneously distributed toward the slower branches. A set of tests have been carried out through the whole voltage range of the device in such a way that in each one the parameters can be considered constant. Then, with the obtained series of values for each parameter, their voltage dependence has been deduced through linear regression. Practical results of a fourth-order model with voltage-dependent parameters are presented and compared with simulations.
机译:为了设计包括超级电容器的电源电路,需要一个模型,该模型在快速和慢速瞬变中都尽可能接近实际测试的结果。并联RC分支模型的网络被广泛用来证明超级电容器的电气性能。在该模型中,为了在仿真和实际瞬态响应之间实现良好的拟合,必须考虑参数之间的相互依赖性以及其电压依赖性。这项研究提出了一种通过超级电容器的瞬态响应(包括其电压依赖性)来推导RC网络模型参数的方法。该方法论认为,在电流脉冲中提供给设备的电荷不仅被注入到最快的分支中,而且同时被分配到较慢的分支中。已经在设备的整个电压范围内进行了一系列测试,使得每个参数都可以认为是恒定的。然后,利用获得的每个参数的一系列值,已通过线性回归推导了它们的电压依赖性。提出了具有电压相关参数的四阶模型的实际结果,并将其与仿真进行了比较。

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