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Dynamic parameters identification method for inductively coupled power transfer system

机译:电感耦合电力传输系统的动态参数识别方法

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In inductively coupled power transfer (ICPT) system, due to load and coupling parameters dynamic variation, primary resonant system parameters often drift from inherent operating point and lead to drastic decrease of power transfer capability and efficiency. In order to identify dynamically variation of system parameters, this paper put forwards system dynamics parameters identification method based on energy analysis. The method sets up energy supply, storage and dissipation function and energy equilibrium equations in primary resonant tank. And system reflection impedance solving function is given in analytic form as well. Furthermore, with the reflection impedance identification, this paper presents load parameters identification method. The identification methods are derived from energy perspective to avoid complex system modeling and requirements of high speed sampling system. Only zero crossing points sample data of resonant variables are required in system identification process. The identification is beneficial for system controller design. The identification methods are verified by experiments results.
机译:在电感耦合电力传输(ICPT)系统中,由于负载和耦合参数动态变化,初级谐振系统参数通常从内固有的操作点漂移并导致功率传输能力的急剧下降和效率。为了识别系统参数的动态变化,本文提出了基于能量分析的系统动力学参数识别方法。该方法在初级谐振槽中设置能量供应,储存和耗散功能和能量平衡方程。和系统反射阻抗求解功能也以分析形式给出。此外,通过反射阻抗识别,本文提出了负载参数识别方法。识别方法源自能量透视,以避免复杂的系统建模和高速采样系统的要求。系统识别过程中只需要谐振变量的零交叉点样本数据。该识别对于系统控制器设计有益。通过实验结果验证鉴定方法。

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