I am using plotlys scattermapbox to plot points on a map. I'd like to draw the polygon that cover 'x' mile
radius from a POI.
dcc.Graph(id="map-graph"),
@application.callback([
Output("map-graph", "figure"),
],
[
Input("address", "value"),
Input("type", "value")
]
)
def update_graph(address, type):
for i, row in df.iterrows():
lat = row["Lat"]
lng = row["Long"]
data.append({
"type": "scattermapbox",
"lat": [lat],
"lon": [lng],
"name": "Location",
"showlegend": False,
"hoverinfo": "text",
"mode": "markers",
"marker": {
"symbol": "circle",
"size": 8,
"opacity": 0.8,
"color": "black"
}
}
)
# Plot POI
POI_Lat = 37.785908
POI_Long = -122.400803
data.append({
"type": "scattermapbox",
"lat": [POI_Lat],
"lon": [POI_Long],
"marker": {
"symbol": "circle,
"size": 28,
"opacity": 0.7,
"color": "rgb(128, 128, 128)"
}
}
)
df
is a pandas dataframe that includes coordinates for locations within x miles
of POI. How do I update the map-graph
to draw a polygon that covers all the points?
Adding a layer to layout dictionary:
gdf = circles(Lat, Long, radius=1609.34)
print(gdf['geometry'][0])
POLYGON ((385272.0167249573 3768678.19769511, 385264.2673129799 3768520.454790493,.......))
layout = {
"autosize": True,
"hovermode": "closest",
"mapbox": {
"accesstoken": MAPBOX_KEY,
"bearing": 0,
"center": {
"lat": layout_lat,
"lon": layout_lon
},
"layers": [
{
"source": json.loads(gdf.geometry.to_json()),
"below": "traces",
"type": "line",
"color": "purple",
"line": {"width": 1.5},
}
],
"pitch": 0,
"zoom": zoom,
"style": "outdoors",
},
"margin": {
"r": 0,
"t": 0,
"l": 0,
"b": 0,
"pad": 0
}
}
poi_poly()
. NB radius is in meters as per UTM geometryimport shapely.geometry
import pandas as pd
import geopandas as gpd
import requests, io, json
import plotly.express as px
import random
def poi_poly(
df,
radius=10 ** 5,
poi={"Longitude": 0.06665166467428207, "Latitude": 51.19034957885742},
lon_col="Longitude",
lat_col="Latitude",
include_radius_poly=False,
):
# generate a geopandas data frame of the POI
gdfpoi = gpd.GeoDataFrame(
geometry=[shapely.geometry.Point(poi["Longitude"], poi["Latitude"])],
crs="EPSG:4326",
)
# extend point to radius defined (a polygon). Use UTM so that distances work, then back to WSG84
gdfpoi = (
gdfpoi.to_crs(gdfpoi.estimate_utm_crs())
.geometry.buffer(radius)
.to_crs("EPSG:4326")
)
# create a geopandas data frame of all the points / markers
if not df is None:
gdf = gpd.GeoDataFrame(
geometry=df.loc[:, ["Longitude", "Latitude"]]
.dropna()
.apply(
lambda r: shapely.geometry.Point(r["Longitude"], r["Latitude"]), axis=1
)
.values,
crs="EPSG:4326",
)
else:
gdf = gpd.GeoDataFrame(geometry=gdfpoi)
# create a polygon around the edges of the markers that are within POI polygon
return pd.concat(
[
gpd.GeoDataFrame(
geometry=[
gpd.sjoin(
gdf, gpd.GeoDataFrame(geometry=gdfpoi), how="inner"
).unary_union.convex_hull
]
),
gpd.GeoDataFrame(geometry=gdfpoi if include_radius_poly else None),
]
)
# get some public addressess - hospitals. data that can be scattered
dfhos = pd.read_csv(
io.StringIO(
requests.get("http://media.nhschoices.nhs.uk/data/foi/Hospital.csv").text
),
sep="",
engine="python",
)
# generate polygon of markers within 5 mile radius of Point of Interest
poi = dfhos.loc[random.randint(0, len(dfhos) - 1), ["Longitude", "Latitude"]].to_dict()
gdf = poi_poly(dfhos, poi=poi, radius=1609.34 * 5, include_radius_poly=True)
fig = (
px.scatter_mapbox(
dfhos,
lat="Latitude",
lon="Longitude",
color="Sector",
hover_data=["OrganisationName", "Postcode"],
)
.update_traces(marker={"size": 10})
.update_layout(
mapbox={
"style": "open-street-map",
"zoom": 9,
"center": {"lat": poi["Latitude"], "lon": poi["Longitude"]},
"layers": [
{
"source": json.loads(gdf.geometry.to_json()),
"below": "traces",
"type": "line",
"color": "purple",
"line": {"width": 1.5},
}
],
},
margin={"l": 0, "r": 0, "t": 0, "b": 0},
)
)
fig.show()
poi_poly()
has been updated. DataFrame is no longer mandatory for finding markers within POIimport plotly.graph_objects as go
poi = {"Latitude": 37.785908, "Longitude": -122.400803}
go.Figure(go.Scattermapbox()).update_layout(
mapbox={
"style": "open-street-map",
"zoom": 9,
"center": {"lat": poi["Latitude"], "lon": poi["Longitude"]},
"layers": [
{
"source": json.loads(poi_poly(None, poi=poi, radius=1609).to_json()),
"below": "traces",
"type": "line",
"color": "purple",
"line": {"width": 1.5},
}
],
},
margin={"l": 0, "r": 0, "t": 0, "b": 0},
)
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