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Lære Challenge: One-Class SVM for Novelty Detection | Kernel-Based Methods
Outlier and Novelty Detection in Python

bookChallenge: One-Class SVM for Novelty Detection

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You are given a 2D dataset of normal points and a few anomalies. Your task is to train a One-Class SVM model to detect novelties, visualize prediction results, and print anomaly proportions.

Follow these steps:

  1. Import and initialize OneClassSVM from sklearn.svm.
    • Use kernel='rbf', gamma=0.1, nu=0.05.
  2. Fit the model on normal data only (X_train).
  3. Predict labels for test data (X_test).
    • Label meaning: 1 → normal, -1 → novel/anomalous.
  4. Compute the fraction of anomalies in X_test.
  5. Print:
    • Shapes of train/test sets.
    • Number and fraction of anomalies detected.

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Sektion 5. Kapitel 3
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bookChallenge: One-Class SVM for Novelty Detection

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Opgave

Swipe to start coding

You are given a 2D dataset of normal points and a few anomalies. Your task is to train a One-Class SVM model to detect novelties, visualize prediction results, and print anomaly proportions.

Follow these steps:

  1. Import and initialize OneClassSVM from sklearn.svm.
    • Use kernel='rbf', gamma=0.1, nu=0.05.
  2. Fit the model on normal data only (X_train).
  3. Predict labels for test data (X_test).
    • Label meaning: 1 → normal, -1 → novel/anomalous.
  4. Compute the fraction of anomalies in X_test.
  5. Print:
    • Shapes of train/test sets.
    • Number and fraction of anomalies detected.

Løsning

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Var alt klart?

Hvordan kan vi forbedre det?

Tak for dine kommentarer!

Sektion 5. Kapitel 3
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single

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