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An easy-to-use library for recommender systems.

Project description

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Surprise

Overview

Surprise is a Python scikit building and analyzing recommender systems.

Surprise was designed with the following purposes in mind:

The name SurPRISE (roughly :) ) stands for Simple Python RecommendatIon System Engine.

Getting started, example

Here is a simple example showing how you can (down)load a dataset, split it for 3-folds cross-validation, and compute the MAE and RMSE of the SVD algorithm.

from surprise import SVD
from surprise import Dataset
from surprise import evaluate, print_perf


# Load the movielens-100k dataset (download it if needed),
# and split it into 3 folds for cross-validation.
data = Dataset.load_builtin('ml-100k')
data.split(n_folds=3)

# We'll use the famous SVD algorithm.
algo = SVD()

# Evaluate performances of our algorithm on the dataset.
perf = evaluate(algo, data, measures=['RMSE', 'MAE'])

print_perf(perf)

Output:

Evaluating RMSE, MAE of algorithm SVD.

        Fold 1  Fold 2  Fold 3  Mean
MAE     0.7475  0.7447  0.7425  0.7449
RMSE    0.9461  0.9436  0.9425  0.9441

Surprise can do much more (e.g, GridSearch)! You’ll find more usage examples in the documentation.

Benchmarks

Here are the average RMSE, MAE and total execution time of various algorithms (with their default parameters) on a 5-folds cross-validation procedure. The datasets are the Movielens 100k and 1M datasets. The folds are the same for all the algorithms (the random seed is set to 0). All experiments are run on a small laptop with Intel Core i3 1.7 GHz, 4Go RAM. The execution time is the real execution time, as returned by the GNU time command.

Movielens 100k

RMSE

MAE

Time (s)

NormalPredictor

1.5228

1.2242

4

BaselineOnly

.9445

.7488

5

KNNBasic

.9789

.7732

27

KNNWithMeans

.9514

.7500

30

KNNBaseline

.9306

.7334

44

SVD

.9364

.7381

46

SVD++

.9200

.7253

31min

NMF

.9634

.7572

55

Slope One

.9454

.7430

25

Co clustering

.9678

.7579

15

Movielens 1M

RMSE

MAE

Time (min)

NormalPredictor

1.5037

1.2051

< 1

BaselineOnly

.9086

.7194

< 1

KNNBasic

.9207

.7250

22

KNNWithMeans

.9292

.7386

22

KNNBaseline

.8949

.7063

44

SVD

.8738

.6858

7

NMF

.9155

.7232

9

Slope One

.9065

.7144

8

Co clustering

.9155

.7174

2

Installation / Usage

The easiest way is to use pip (you’ll need numpy):

$ pip install numpy
$ pip install scikit-surprise

Or you can clone the repo and build the source (you’ll need Cython and numpy):

$ git clone https://github.com/NicolasHug/surprise.git
$ python setup.py install

License

This project is licensed under the BSD 3-Clause license, so it can be used for pretty much everything, including commercial applications. Please let us know how Surprise is useful to you!

Here is a Bibtex entry if you ever need to cite Surprise in a research paper (please keep us posted, we would love to know if Surprise was helpful to you):

@Misc{Surprise,
author =   {Hug, Nicolas},
title =    { {S}urprise, a {P}ython library for recommender systems},
howpublished = {\url{http://surpriselib.com}},
year = {2017}
}

Acknowledgements:

Contributing, feedback, contact

Any kind of feedback/criticism would be greatly appreciated (software design, documentation, improvement ideas, spelling mistakes, etc…).

If you’d like to see some features or algorithms implemented in Surprise, please let us know!

Please feel free to contribute (see guidelines) and send pull requests!

To contact us, send us a tweet or mail us at contact at nicolas-hug dot com. For any bug or issue, please use the GitHub project page.

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