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Temporal Convolutions for Multi-Step Quadrotor Motion Prediction

Samuel Looper, Steven L. Waslander

发表年份
2022
引用次数
8

摘要

Model-based control methods for robotic systems such as quadrotors, autonomous driving vehicles and flexible manipulators require motion models that generate accurate predictions of complex nonlinear system dynamics over long periods of time. Temporal Convolutional Networks (TCNs) can be adapted to this challenge by formulating multi-step prediction as a sequence-to-sequence modeling problem. We present End2End-TCN: a fully convolutional architecture that integrates future control inputs to compute multi-step motion predictions in one forward pass. We demonstrate the approach with a thorough analysis of TCN performance for the quadrotor modeling task, which includes an investigation of scaling effects and ablation studies. Ultimately, End2End- Tcnprovides 55% error reduction over the state of the art in multi-step prediction on an aggressive indoor quadrotor flight d ataset. The model yields accurate predictions across 90 timestep horizons over a 900 ms interval.

关键词

Computer scienceReduction (mathematics)Motion (physics)Nonlinear systemTask (project management)Artificial intelligenceSequence (biology)Motion controlControl theory (sociology)Algorithm

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