| @@ -130,12 +130,12 @@ if __name__ == "__main__": | |||
| ax02 = ax00.twinx() | |||
| # Plot vertical lines | |||
| lte_handovers = transmission_df["lte_pcid"].diff().dropna() | |||
| lte_handovers = transmission_df["Cell_ID"].diff().dropna() | |||
| for index, value in lte_handovers.items(): | |||
| if value > 0: | |||
| ax00.axvline(index, ymin=0, ymax=1, color="skyblue", label="4G Handover") | |||
| nr_handovers = transmission_df["nr_pcid"].diff().dropna() | |||
| nr_handovers = transmission_df["NR5G_Cell_ID"].diff().dropna() | |||
| for index, value in nr_handovers.items(): | |||
| if value > 0: | |||
| ax00.axvline(index, ymin=0, ymax=1, color="greenyellow", label="5G Handover") | |||
| @@ -157,7 +157,7 @@ if __name__ == "__main__": | |||
| ax02.set_ylim(-25, -5) | |||
| ax00.set_xlabel("arrival time [s]") | |||
| ax2.set_ylabel("Goodput [mbps]") | |||
| ax00.set_ylabel("NR RSRQ [dB]") | |||
| ax02.set_ylabel("LTE RSRQ [dB]") | |||