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https://github.com/WallabyLester/RBF-aPID-Controller.git
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Cleaning up.
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@@ -10,13 +10,13 @@ with simulated data can be found in `first_order_sim.py`
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The method has been implemented in three ways:
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The method has been implemented in three ways:
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1. TensorFlow : Using TF to build and train the RBF Model.
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1. [TF_Implementation](/TF_Implementation/): Using TensorFlow to build and train the RBF Model.
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2. Numpy: Using Numpy to build and train the RBF Model.
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2. [NP_Implementation](/NP_Implementation/): Using Numpy to build and train the RBF Model.
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3. C++: Written in C++ (requiring `cmath`), for use on embedded systems.
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3. C++ `CPP_Implementation`: Written in C++ (requiring `cmath`), for use on embedded systems.
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+4
-4
@@ -1,10 +1,10 @@
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import matplotlib.pyplot as plt
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import matplotlib.pyplot as plt
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import numpy as np
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import numpy as np
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from RBF_numpy import RBFNetwork
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from NP_Implementation.RBF_numpy import RBFNetwork
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from aPID_numpy import AdaptivePIDNP
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from NP_Implementation.aPID_numpy import AdaptivePIDNP
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from RBF_tf import RBFAdaptiveModel, train_rbf_adaptive
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from TF_Implementation.RBF_tf import RBFAdaptiveModel, train_rbf_adaptive
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from aPID_tf import AdaptivePIDTf
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from TF_Implementation.aPID_tf import AdaptivePIDTf
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def simulate_system(controller, target, dt, T):
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def simulate_system(controller, target, dt, T):
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""" Simulate control model as first order system.
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""" Simulate control model as first order system.
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