Research data supporting "An LTspice Electrical Circuit Model of the HTS Dynamo"
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A summary of the research data supporting "An LTspice Electrical Circuit Model of the HTS Dynamo."The dataset related to this publication ("EUCAS 2023 LTspice Dynamo Modelling Data 23-8-2023.xlsx") can be opened in Microsoft Excel and is available at https://doi.org/10.18742/24018519.Sheet 1: "Fig. 3"Figure 3 of the manuscript, including caption: "Fig. 3. The calculated charging current curves of the HTS coil in LTspice, compared with the results from the analytical equation (1), for three HTS dynamo frequencies of 4.25, 25 and 50 Hz, and an airgap of 3.7 mm."Sheets 2-4: "3.7 mm 4.25 Hz," "3.7 mm, 25 Hz," "3.7 mm, 50 Hz"Data used to produce Figure 3 of the manuscript (Sheet 1), for three HTS dynamo frequencies of 4.25, 25 and 50 Hz, respectively, and an airgap of 3.7 mm.Numerical data generated by LTspice; analytical data from reference [9] - see main manuscript.Sheet 5: "Fig. 4"Figures 4(a) and 4(b) of the manuscript, including caption: "Fig. 4. (a) Measured I-V curve of the load HTS coil in [12], (b) Calculated (open symbols) and fitted (dashed line) equivalent resistance for the coil, used as Rsc in the equivalent circuit (see Fig. 1) and LTspice model."The experimental data (columns A-D) are related to reference [12] for the HTS coil's critical current; columns E-F are the calculated resistance values from R = V/I; columns G-H are the fitted R(I) curves using equation (2) - see main manuscript.Sheet 6: "Fig. 5"Figure 5 of the manuscript, including caption: "Fig. 5. The calculated charging current curves of the HTS coil in LTspice, compared with the experimental results reported in [12], for three HTS dynamo frequencies of 48, 192 and 600 Hz."Sheets 7-9: "Expt 48 Hz," "Expt 192 Hz," "Expt 600 Hz"Data used to produce Figure 5 of the manuscript (Sheet 6), for three HTS dynamo frequencies of 48, 192 and 600 Hz, respectively.Numerical data generated by LTspice; experimental data from reference [12] - see main manuscript.
对《基于LTspice的HTS发电机电气电路模型》研究数据的概要。本数据集与相关出版物(《EUCAS 2023 LTspice Dynamo Modelling Data 23-8-2023.xlsx》)关联,可通过Microsoft Excel进行打开,并可在以下链接获取:https://doi.org/10.18742/24018519。其中,工作表1:'图3',包括图注:'图3. 在LTspice中计算出的HTS线圈充电电流曲线,与解析方程(1)的结果进行比较,针对三种HTS发电机频率4.25 Hz、25 Hz和50 Hz,以及3.7 mm的气隙。工作表2-4:'3.7 mm 4.25 Hz'、'3.7 mm, 25 Hz'、'3.7 mm, 50 Hz',用于制作论文中图3的数据(工作表1),针对三种HTS发电机频率4.25 Hz、25 Hz和50 Hz,以及3.7 mm的气隙,分别提供的数据。由LTspice生成的数值数据;参考[9]中的解析数据——见正文。工作表5:'图4',包括图注:'图4. (a) [12]中负载HTS线圈的测量I-V曲线,(b) 计算并拟合的线圈等效电阻,用作等效电路(见图1)和LTspice模型中的Rsc。与参考[12]相关的实验数据(列A-D)用于HTS线圈的临界电流;列E-F是R = V/I计算得到的电阻值;列G-H是使用方程(2)拟合的R(I)曲线——见正文。工作表6:'图5',包括图注:'图5. 在LTspice中计算出的HTS线圈充电电流曲线,与[12]中报道的实验结果进行比较,针对三种HTS发电机频率48 Hz、192 Hz和600 Hz。工作表7-9:'Expt 48 Hz'、'Expt 192 Hz'、'Expt 600 Hz',用于制作论文中图5的数据(工作表6),针对三种HTS发电机频率48 Hz、192 Hz和600 Hz,分别提供的数据。由LTspice生成的数值数据;参考[12]中的实验数据——见正文。
提供机构:
King's College London



