Add working unit conversion function for electrochemistry module
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1 changed files with 37 additions and 10 deletions
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@ -10,7 +10,7 @@ def read_battsmall(path):
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Output:
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df: pandas DataFrame containing the data as-is, but without additional NaN-columns.'''
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df = pd.read_csv(data1, skiprows=2, sep='\t')
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df = pd.read_csv(path, skiprows=2, sep='\t')
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df = df.loc[:, ~df.columns.str.contains('^Unnamed')]
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return df
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@ -31,21 +31,29 @@ def clean_battsmall_data(df, t='ms', C='mAh/g', I='mA', U='V'):
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df: A cleaned up DataFrame with desired units and additional column about charge/discharge.
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'''
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df = unit_conversion(df=df, t=t, C=C, I=I, U=U)
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return df
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def test_print():
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print('IT WORKS!')
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def unit_conversion(df, t, C, I, U):
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print('YAHOO!')
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C, m = C.split('/')
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# Get the units used in the data set
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t_prev = df.columns[0].split()[-1].strip('[]')
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U_prev = df.columns[1].split()[-1].strip('[]')
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I_prev = df.columns[2].split()[-1].strip('[]')
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C_prev_num, C_prev_den = df.columns[4].split()[-1].strip('[]').split('/')
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C_prev, m_prev = df.columns[4].split()[-1].strip('[]').split('/')
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print(t_prev)
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# Define matrix for unit conversion for time
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t_units_df = {'h': [1, 60, 3600, 3600000], 'min': [1/60, 1, 60, 60000], 's': [1/3600, 1/60, 1, 1000], 'ms': [1/3600000, 1/60000, 1/1000, 1]}
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@ -53,20 +61,39 @@ def unit_conversion(df, t, C, I, U):
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t_units_df.index = ['h', 'min', 's', 'ms']
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# Define matrix for unit conversion for current
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I_units_df = {'A': [1, 60, 3600, 3600000], 'mA': [1/60, 1, 60, 60000], 'uA': [1/3600, 1/60, 1, 1000]}
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I_units_df = {'A': [1, 1000, 1000000], 'mA': [1/1000, 1, 1000], 'uA': [1/1000000, 1/1000, 1]}
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I_units_df = pd.DataFrame(I_units_df)
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I_units_df.index = ['A', 'mA', 'uA']
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# Define matrix for unit conversion for voltage
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I_units_df = {'A': [1, 60, 3600, 3600000], 'mA': [1/60, 1, 60, 60000], 'uA': [1/3600, 1/60, 1, 1000]}
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I_units_df = pd.DataFrame(I_units_df)
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I_units_df.index = ['A', 'mA', 'uA']
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U_units_df = {'V': [1, 1000, 1000000], 'mV': [1/1000, 1, 1000], 'uV': [1/1000000, 1/1000, 1]}
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U_units_df = pd.DataFrame(U_units_df)
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U_units_df.index = ['V', 'mV', 'uV']
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# Define matrix for unit conversion for capacity
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C_units_df = {'Ah': [1, 60, 3600, 3600000], 'mAh': [1/60, 1, 60, 60000], 'uAh': [1/3600, 1/60, 1, 1000]}
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C_units_df = {'Ah': [1, 1000, 1000000], 'mAh': [1/1000, 1, 1000], 'uAh': [1/1000000, 1/1000, 1]}
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C_units_df = pd.DataFrame(C_units_df)
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C_units_df.index = ['Ah', 'mAh', 'uAh']
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# Define matrix for unit conversion for capacity
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m_units_df = {'kg': [1, 1000, 1000000, 1000000000], 'g': [1/1000, 1, 1000, 1000000], 'mg': [1/1000000, 1/1000, 1, 1000], 'ug': [1/1000000000, 1/1000000, 1/1000, 1]}
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m_units_df = pd.DataFrame(m_units_df)
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m_units_df.index = ['kg', 'g', 'mg', 'ug']
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#print(df["TT [{}]".format(t_prev)])
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df["TT [{}]".format(t_prev)] = df["TT [{}]".format(t_prev)] * t_units_df[t_prev].loc[t]
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df["U [{}]".format(U_prev)] = df["U [{}]".format(U_prev)] * U_units_df[U_prev].loc[U]
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df["I [{}]".format(I_prev)] = df["I [{}]".format(I_prev)] * I_units_df[I_prev].loc[I]
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df["C [{}/{}]".format(C_prev, m_prev)] = df["C [{}/{}]".format(C_prev, m_prev)] * (C_units_df[C_prev].loc[C] / m_units_df[m_prev].loc[m])
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df.columns = ['TT [{}]'.format(t), 'U [{}]'.format(U), 'I [{}]'.format(I), 'Z1', 'C [{}/{}]'.format(C, m), 'Comment']
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return df
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