Source code for RCAIDE.Library.Plots.Mass_Properties.plot_center_of_gravity_drift

# RCAIDE/Library/Plots/Mass_Properties/plot_center_of_gravity_drift.py
# 
# 
# Created:  Jul 2023, M. Clarke

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#  IMPORT
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from RCAIDE.Framework.Core import Units
from RCAIDE.Library.Plots.Common import set_axes, plot_style, segment_colors 
import matplotlib.pyplot as plt
import numpy as np 

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#  PLOTS
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[docs] def plot_center_of_gravity_drift(results, save_figure = False, show_legend = True, save_filename = "Center_of_Gravity" , file_type = ".png", width = 11, height = 7): """ Creates a four-panel plot showing throttle settings, vehicle weight, specific fuel consumption (SFC), and fuel consumption rate over time. Parameters ---------- results : Results RCAIDE results structure containing segment data save_figure : bool, optional Flag for saving the figure (default: False) show_legend : bool, optional Flag for displaying plot legend (default: True) save_filename : str, optional Name of file for saved figure (default: "Center_of_Gravity") file_type : str, optional File extension for saved figure (default: ".png") width : float, optional Figure width in inches (default: 11) height : float, optional Figure height in inches (default: 7) Returns ------- fig : matplotlib.figure.Figure Figure handle containing the generated plots Notes ----- The function creates a 2x2 subplot containing: 1. Vehicle center of gravity x-location vs time 2. Vehicle center of gravity y-location vs time 3. Vehicle center of gravity z-location vs time Each segment is plotted with a different color from the inferno colormap. """ # get plotting style ps = plot_style() parameters = {'axes.labelsize': ps.axis_font_size, 'xtick.labelsize': ps.axis_font_size, 'ytick.labelsize': ps.axis_font_size, 'axes.titlesize': ps.title_font_size} plt.rcParams.update(parameters) # get line colors for plots line_colors = segment_colors(len(results.segments)) fig = plt.figure(save_filename) fig.set_size_inches(width,height) axis_1 = plt.subplot(2,2,1) axis_2 = plt.subplot(2,2,2) axis_3 = plt.subplot(2,2,3) for i in range(len(results.segments)): time = results.segments[i].conditions.frames.inertial.time[:, 0] / Units.min CG_x = results.segments[i].conditions.weights.vehicle.global_center_of_gravity[:, 0] CG_y = results.segments[i].conditions.weights.vehicle.global_center_of_gravity[:, 1] CG_z = results.segments[i].conditions.weights.vehicle.global_center_of_gravity[:, 2] axis_1.set_ylabel(r'$C.G._x$ (m)') axis_2.set_ylabel(r'$C.G._y$ (m)') axis_3.set_ylabel(r'$C.G._z$ (m)') segment_tag = results.segments[i].tag segment_name = segment_tag.replace('_', ' ') axis_1.plot(time, CG_x, color = line_colors[i], marker = ps.markers[0], linewidth = ps.line_width, label = segment_name ) set_axes(axis_1) axis_2.plot(time, CG_y, color = line_colors[i], marker = ps.markers[0], linewidth = ps.line_width) axis_2.set_xlabel('Time (mins)') set_axes(axis_2) axis_3.plot(time, CG_z, color = line_colors[i], marker = ps.markers[0], linewidth = ps.line_width) axis_3.set_xlabel('Time (mins)') set_axes(axis_3) if show_legend: leg = fig.legend(bbox_to_anchor=(0.5, 0.95), loc='upper center', ncol = 4) # Adjusting the sub-plots for legend fig.tight_layout() fig.subplots_adjust(top=0.8) # set title of plot title_text = 'Center of Gravity' fig.suptitle(title_text) if save_figure: plt.savefig(save_filename + file_type) return fig