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The PIN diode model for high frequency dynamic transient characteristic simulation is important in conducted EMI analysis. The model should take junction temperature into consideration since equipment usually works at a wide range of temperature. In this paper, a temperature-variable high frequency dynamic model for the PIN diode is built, which is based on the Laplace-transform analytical model at constant temperature. The relationship between model parameters and temperature is expressed as temperature functions by analyzing the physical principle of these parameters. A fast recovery power diode MUR1560 is chosen as the test sample and its dynamic performance is tested under inductive load by a temperature chamber experiment, which is used for model parameter extraction and model verification. Results show that the model proposed in this paper is accurate for reverse recovery simulation with relatively small errors at the temperature range from 25 to 120 ℃. 相似文献
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基于超级电容模型的参数辨识及其仿真研究 总被引:1,自引:0,他引:1
研究和分析了超级电容三分枝模型建立的理论基础,阐述了参数辨识的概念和递推最小二乘法应用于参数辨识的基本原理,在此基础上结合Matlab,编写了递推最小二乘法辨识程序,实现了对超级电容三分枝模型传递函数的辨识,最后通过对辨识结果的分析和仿真,验证了三分枝模型的正确性。 相似文献
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为解决配电网中高渗透率光伏及用电高峰负荷过重带来的电压越限问题,并在分时电价政策下通过低储高发获取经济收益以降低储能作为电压控制手段的成本,提出一种电池储能系统综合运行控制策略。该策略包括电压控制和套利运作两部分,其中电压控制部分以防止电压越限为目标,建立包括电池剩余寿命(TOU)、荷电状态(SOC)、电压灵敏度特性、电池动作费用等在内的评价矩阵,选择综合评价指标最大者进行控制,以提高电压控制效率;套利运作部分以保证电压安全为前提,结合用电峰谷电价,尽量减少电池动作对节点电压的影响,选择电压灵敏度因数及动作费用最小、电池状态最优者进行控制。该方法在实现削峰填谷,改善配网电压安全,提高储能安装用户收益的同时,兼顾电池储能系统的状态变化,实现了功率在各储能单元间的合理分配,提高了动作效率,均衡了各储能单元的使用率,延长了整个储能系统的使用寿命。最后通过算例分析验证了该控制方法的有效性。 相似文献
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