Skip to main content

Package for reading raw atmospheric lidar data.

Project description

Overview

This package provides utilities to handle raw (atmospheric) lidar input data. The main format supported are Licel binary files (including the Raymetrics modified format).

The package provides a single command line tool, called licel2scc that can convert Licel binary files to the EARLINET’s Single Calculus Chain NetCDF format.

Installation

The easiest way to install this module is from the python package index using pip:

pip install atmospheric-lidar

Using it as a Licel to SCC converter

Parameter file

Before converting Licel binary to SCC format, you need to create a file linking Licel channels to SCC channels.

As an example, you can start by changing the file “cf_netcdf_parameters.py” that describe such parameters for the Clermont Ferrand lidar.

Command line interface

The usage of the licel2scc program is described below:

A program to convert Licel binary files to the SCC NetCDF format.

positional arguments:
  parameter_file        The path to a parameter file linking licel and SCC
                        channels.
  files                 Location of licel files. Use relative path and
                        filename wildcards. (default './*.*')

optional arguments:
  -h, --help            show this help message and exit
  -i, --id_as_name      Use transient digitizer ids as channel names, instead
                        of descriptive names
  -m MEASUREMENT_ID, --measurement_id MEASUREMENT_ID
                        The new measurement id
  -n MEASUREMENT_NUMBER, --measurement_number MEASUREMENT_NUMBER
                        The measurement number for the date from 00 to 99.
                        Used if no id is provided
  -t TEMPERATURE, --temperature TEMPERATURE
                        The temperature (in C) at lidar level, required if
                        using US Standard atmosphere
  -p PRESSURE, --pressure PRESSURE
                        The pressure (in hPa) at lidar level, required if
                        using US Standard atmosphere
  -D DARK_FILES, --dark_files DARK_FILES
                        Location of files containing dark measurements.
                        Use relative path and filename wildcars, see 'files'
                        parameter for example.
  -d, --debug           Print dubuging information.
  -s, --silent          Show only warning and error messages.
  --version             Show current version.

Similarly, the licel2scc-depol program can be used to convert Licel files from Delta45 depolarization calibration measurements:

A program to convert Licel binary files from depolarization calibration
measurements to the SCC NetCDF format.

positional arguments:
  parameter_file        The path to a parameter file linking licel and SCC
                        channels.
  plus45_string         Search string for plus 45 degree files (default '*.*')
  minus45_string        Search string for minus 45 degree files (default
                        '*.*')

optional arguments:
  -h, --help            show this help message and exit
  -i, --id_as_name      Use transient digitizer ids as channel names, instead
                        of descriptive names
  -m MEASUREMENT_ID, --measurement_id MEASUREMENT_ID
                        The new measurement id
  -n MEASUREMENT_NUMBER, --measurement_number MEASUREMENT_NUMBER
                        The measurement number for the date from 00 to 99.
                        Used if no id is provided
  -t TEMPERATURE, --temperature TEMPERATURE
                        The temperature (in C) at lidar level, required if
                        using US Standard atmosphere
  -p PRESSURE, --pressure PRESSURE
                        The pressure (in hPa) at lidar level, required if
                        using US Standard atmosphere
  -d, --debug           Print dubuging information.
  -s, --silent          Show only warning and error messages.
  --version             Show current version.

Usage in python code

System class

To read data from a system, you need create a class that describes you system. This is very simple if your lidar data are in the Licel format, as you only need to specify the external file with the extra SCC parameters. You can use as an example the file cf_netcdf_parameters.py:

from licel import LicelLidarMeasurement
import cf_netcdf_parameters

class CfLidarMeasurement(LicelLidarMeasurement):
    extra_netcdf_parameters = cf_netcdf_parameters

This code assumes that the cf_netcdf_parameters.py is in your python path.

Using the class

Once you have made the above setup you can start using it. The best way to understand how it works is through an interactive shell (I suggest [ipython](http://ipython.org/)). In the following example I use the cf_raymetrics setup:

import glob  # This is needed to read a list of filenames
import cf_lidar

# Go to the folder where you files are stored
cd /path/to/lidar/files

# Read the filenames
files  = glob.glob("*") # The * reads all the files in the folder.

# Read the files
my_measurement = cf_lidar.CfLidarMeasurement(files)

# Now the data have been read, and you have a measurement object to work with:
# See what channels are present
print(my_measurement.channels)

# Quicklooks of all the channels
my_measurements.plot()

Converting to SCC format

There are some extra info you need to put in before converting to SCC format, “Measurement_ID”, “Temperature”, “Pressure”:

my_measurement.info["Measurement_ID"] = "20101229op00"
my_measurement.info["Temperature"] = "14"
my_measurement.info["Pressure"] = "1010"

You can use standard values of temperature and pressure by just calling:

my_measurement.get_PT()

You can specify the standard values by overriding your system’s get_PT method:

from licel import LicelLidarMeasurement
import cf_netcdf_parameters

class CfLidarMeasurement(LicelLidarMeasurement):
    extra_netcdf_parameters = cf_netcdf_parameters

    def get_PT():
        self.info['Temperature'] = 25.0
        self.info['Pressure'] = 1020.0

If you have an external source of temperature and pressure information (a meteorological station) you can automate this by reading the appropriate code in the get_PT method .

After you have used this extra input, you save the file using this command:

my_measurement.save_as_SCC_netcdf("filename")

where you change the output filename to the filename you want to use.

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

atmospheric_lidar-0.5.2.tar.gz (42.4 kB view details)

Uploaded Source

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

atmospheric_lidar-0.5.2-py3-none-any.whl (49.6 kB view details)

Uploaded Python 3

File details

Details for the file atmospheric_lidar-0.5.2.tar.gz.

File metadata

  • Download URL: atmospheric_lidar-0.5.2.tar.gz
  • Upload date:
  • Size: 42.4 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/3.1.1 pkginfo/1.5.0.1 requests/2.21.0 setuptools/41.1.0 requests-toolbelt/0.9.1 tqdm/4.43.0 CPython/3.7.5

File hashes

Hashes for atmospheric_lidar-0.5.2.tar.gz
Algorithm Hash digest
SHA256 0468d2afb7bd9739f6a29ebd529ac3f0c276157a4324ed6ee1e00ff0d38f6e69
MD5 8b05883aabee09aaf761bce137cbfa33
BLAKE2b-256 80eb7905a01e9615411c32ec0a7de5a3bcb0c3194ac34f49d2fe49872a56231f

See more details on using hashes here.

File details

Details for the file atmospheric_lidar-0.5.2-py3-none-any.whl.

File metadata

  • Download URL: atmospheric_lidar-0.5.2-py3-none-any.whl
  • Upload date:
  • Size: 49.6 kB
  • Tags: Python 3
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/3.1.1 pkginfo/1.5.0.1 requests/2.21.0 setuptools/41.1.0 requests-toolbelt/0.9.1 tqdm/4.43.0 CPython/3.7.5

File hashes

Hashes for atmospheric_lidar-0.5.2-py3-none-any.whl
Algorithm Hash digest
SHA256 acba818e374e7157f413df6e272cd3cbe03ad225d815c65b6b4dfaa26c04cfdb
MD5 cedcb8667c0ce479e2b926af2890bf90
BLAKE2b-256 204de0f82282a640b8475b8cfdf884b7aa44337d3e0b4787bb90dabbf00bac29

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page