| @@ -220,22 +220,6 @@ if __name__ == "__main__": | |||
| label="goodput", | |||
| ) | |||
| # filter active state | |||
| for i in range(1, 5): | |||
| transmission_df["LTE_SCC{}_effective_bw".format(i)] = transmission_df["LTE_SCC{}_bw".format(i)] | |||
| mask = transmission_df["LTE_SCC{}_state".format(i)].isin(["ACTIVE"]) | |||
| transmission_df["LTE_SCC{}_effective_bw".format(i)] = transmission_df[ | |||
| "LTE_SCC{}_effective_bw".format(i) | |||
| ].where(mask, other=0) | |||
| # filter if sc is usesd for uplink | |||
| for i in range(1, 5): | |||
| mask = transmission_df["LTE_SCC{}_UL_Configured".format(i)].isin([False]) | |||
| transmission_df["LTE_SCC{}_effective_bw".format(i)] = transmission_df[ | |||
| "LTE_SCC{}_effective_bw".format(i) | |||
| ].where(mask, other=0) | |||
| # sum all effective bandwidth for 5G and 4G | |||
| transmission_df["SCC1_NR5G_effective_bw"] = transmission_df["SCC1_NR5G_bw"].fillna(0) | |||
| transmission_df["effective_bw_sum"] = ( | |||
| @@ -246,14 +230,7 @@ if __name__ == "__main__": | |||
| + transmission_df["LTE_SCC4_effective_bw"] | |||
| + transmission_df["LTE_bw"] | |||
| ) | |||
| bw_cols = [ | |||
| "SCC1_NR5G_effective_bw", | |||
| "LTE_bw", | |||
| "LTE_SCC1_effective_bw", | |||
| "LTE_SCC2_effective_bw", | |||
| "LTE_SCC3_effective_bw", | |||
| "LTE_SCC4_effective_bw", | |||
| ] | |||
| bw_cols = ["nr_effective_bw_sum", "lte_effective_bw_sum"] | |||
| ax_stacked = transmission_df[bw_cols].plot.area(stacked=True, linewidth=0, ax=ax00) | |||
| ax00.set_ylabel("bandwidth [MHz]") | |||
| @@ -290,7 +267,7 @@ if __name__ == "__main__": | |||
| #ax0.set_zorder(100) | |||
| lns_ax00 = [ax_stacked] | |||
| labs_ax00 = [l.get_label() for l in lns_ax00] | |||
| labs_ax00 = ["5G bandwidth", "4G bandwidth"] | |||
| ax00.legend(lns_ax00, labs_ax00, ncols=3, fontsize=9, loc="upper center", frameon=legend_frame) | |||
| #ax00.set_zorder(100) | |||
| plt.savefig("{}{}_plot.eps".format(args.save, csv.replace(".csv", "")), bbox_inches="tight") | |||