Update app.py
Browse files
app.py
CHANGED
@@ -454,8 +454,31 @@ if st.button('Сгенерировать потери'):
|
|
454 |
#st.bar_chart(df_1, x="Audio", y="PLCMOSv2")
|
455 |
#st.bar_chart(df_1, x="Audio", y="WER")
|
456 |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
457 |
|
458 |
-
#col1, col2, col3, col4, col5 = st.columns(5)
|
459 |
#col1.metric("PESQ", value = psq_mas[-1], delta = psq_mas[-1] - psq_mas[-2])
|
460 |
#col2.metric("STOI", value = stoi_mass[-1], delta = stoi_mass[-1] - stoi_mass[-2])
|
461 |
#col3.metric("PLCMOSv1", value = PLC_massv1[-1], delta = PLC_massv1[-1] - PLC_massv1[-2])
|
|
|
454 |
#st.bar_chart(df_1, x="Audio", y="PLCMOSv2")
|
455 |
#st.bar_chart(df_1, x="Audio", y="WER")
|
456 |
|
457 |
+
col1, col2, col3, col4, col5 = st.columns(5)
|
458 |
+
st.write("Original")
|
459 |
+
col1.metric("PESQ", value = psq_mas[0])
|
460 |
+
col2.metric("STOI", value = stoi_mass[0])
|
461 |
+
col3.metric("PLCMOSv1", value = PLC_massv1[0])
|
462 |
+
col4.metric("PLCMOSv2", value = PLC_massv2[0])
|
463 |
+
col5.metric("WER", value = WER_mass[0])
|
464 |
+
|
465 |
+
|
466 |
+
col1, col2, col3, col4, col5 = st.columns(5)
|
467 |
+
st.write("Lossy")
|
468 |
+
col1.metric("PESQ", value = psq_mas[1], delta = (abs(psq_mas[1] - psq_mas[0]) / psq_mas[0]) * 100.0)
|
469 |
+
col2.metric("STOI", value = stoi_mass[1], delta = (abs(stoi_mass[1] - stoi_mass[0]) / stoi_mass[0]) * 100.0)
|
470 |
+
col3.metric("PLCMOSv1", value = PLC_massv1[1], delta = (abs(PLC_massv1[1] - PLC_massv1[0]) / PLC_massv1[0]) * 100.0)
|
471 |
+
col4.metric("PLCMOSv2", value = PLC_massv2[1], delta = (abs(PLC_massv2[1] - PLC_massv2[0]) / PLC_massv2[0]) * 100.0)
|
472 |
+
col5.metric("WER", value = WER_mass[1], delta = (abs(WER_mass[1] - WER_mass[0]) / WER_mass[0]) * 100.0, delta_color="inverse)
|
473 |
+
|
474 |
+
col1, col2, col3, col4, col5 = st.columns(5)
|
475 |
+
st.write("Enhanced")
|
476 |
+
col1.metric("PESQ", value = psq_mas[2], delta = (abs(psq_mas[2] - psq_mas[1]) / psq_mas[1]) * 100.0)
|
477 |
+
col2.metric("STOI", value = stoi_mass[2], delta = (abs(stoi_mass[2] - stoi_mass[1]) / stoi_mass[1]) * 100.0)
|
478 |
+
col3.metric("PLCMOSv1", value = PLC_massv1[2], delta = (abs(PLC_massv1[2] - PLC_massv1[1]) / PLC_massv1[1]) * 100.0)
|
479 |
+
col4.metric("PLCMOSv2", value = PLC_massv2[2], delta = (abs(PLC_massv2[2] - PLC_massv2[1]) / PLC_massv2[1]) * 100.0)
|
480 |
+
col5.metric("WER", value = WER_mass[2], delta = (abs(WER_mass[2] - WER_mass[1]) / WER_mass[1]) * 100.0, delta_color="inverse)
|
481 |
|
|
|
482 |
#col1.metric("PESQ", value = psq_mas[-1], delta = psq_mas[-1] - psq_mas[-2])
|
483 |
#col2.metric("STOI", value = stoi_mass[-1], delta = stoi_mass[-1] - stoi_mass[-2])
|
484 |
#col3.metric("PLCMOSv1", value = PLC_massv1[-1], delta = PLC_massv1[-1] - PLC_massv1[-2])
|