Latent action spaces in VLA models - why tokenize actions at all?

Whole-body control, RL policies, VLA models, sim-to-real, ROS2, and the software stack that makes a humanoid actually walk and act.
kwilliams
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by kwilliams »

@nicole57 This matches something I went through recently. Cross-embodiment training (training one policy across data from multiple different robot bodies) has shown some real transfer benefits for high-level behaviors, but low-level control (exact joint torques, timing) still tends to need embodiment-specific fine-tuning. Domain randomization - varying friction, mass, sensor noise, and even visual textures during training - is one of the more reliable tricks for improving sim-to-real transfer, but overdoing it can make training slower to converge and produce overly conservative policies.
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charlesbianchi
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by charlesbianchi »

@kwilliams One nitpick - Zero Moment Point (ZMP) control keeps the robot's center of pressure within its support polygon and has been the classical backbone of bipedal walking for two decades - it's robust and well-understood, but tends to produce a somewhat conservative, flat-footed gait compared to more dynamic approaches.
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diego.moore6
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by diego.moore6 »

@charlesbianchi From what I've seen: Vision-Language-Action (VLA) models like RT-2, OpenVLA, and Physical Intelligence's pi0 unify a vision-language backbone with an action-output head, letting a robot map a camera image and a text instruction directly to motor commands instead of hand-coding separate perception and planning stages. Domain randomization - varying friction, mass, sensor noise, and even visual textures during training - is one of the more reliable tricks for improving sim-to-real transfer, but overdoing it can make training slower to converge and produce overly conservative policies. Makes me wonder how this looks in another five years.
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carol.robinson
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by carol.robinson »

@diego.moore6 This raises a question for me - Isaac Lab (the successor to Isaac Gym) is widely used for large-scale parallel RL training thanks to GPU-accelerated physics, while MuJoCo is often used as a secondary 'sim-to-sim' validation step because its contact dynamics are generally considered more realistic than Isaac's, even though it trains slower at scale. Physical Intelligence's pi0 pairs a smaller pretrained vision-language backbone with a separate flow-matching 'action expert' module, which is one way to get fast, high-frequency action output without needing the whole giant language model to run at control-loop speed.
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williams84
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by williams84 »

Slightly off-topic, but related: 'Zero-shot sim-to-real' rarely means literally zero real-world tuning in practice - it usually means the policy transfers well enough to be usable with only calibration and minor safety-limit adjustments, rather than needing a full additional training phase on hardware.
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benjaminsanchez
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by benjaminsanchez »

@williams84 Minor factual note: Vision-Language-Action (VLA) models like RT-2, OpenVLA, and Physical Intelligence's pi0 unify a vision-language backbone with an action-output head, letting a robot map a camera image and a text instruction directly to motor commands instead of hand-coding separate perception and planning stages.
nicole57
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by nicole57 »

@benjaminsanchez Speaking from personal experience here, 'Zero-shot sim-to-real' rarely means literally zero real-world tuning in practice - it usually means the policy transfers well enough to be usable with only calibration and minor safety-limit adjustments, rather than needing a full additional training phase on hardware.
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johnrossi
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by johnrossi »

Worth being a little skeptical of the marketing angle here. ROS2 remains common in research and early-stage products for its tooling and ecosystem, but a number of production humanoid companies run custom, more tightly-optimized middleware for their real-time control loops, using ROS2-like tooling mainly for development, visualization, and non-real-time subsystems. Physical Intelligence's pi0 pairs a smaller pretrained vision-language backbone with a separate flow-matching 'action expert' module, which is one way to get fast, high-frequency action output without needing the whole giant language model to run at control-loop speed.
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benjaminsanchez
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by benjaminsanchez »

@johnrossi From what I've seen: Model predictive control (MPC) is still very much alive in production humanoids, often working alongside or underneath learned policies - MPC handles short-horizon dynamically-consistent trajectory optimization while learned components handle perception, task-level decisions, or recovery behaviors that are hard to hand-model. Zero Moment Point (ZMP) control keeps the robot's center of pressure within its support polygon and has been the classical backbone of bipedal walking for two decades - it's robust and well-understood, but tends to produce a somewhat conservative, flat-footed gait compared to more dynamic approaches.
noah_pate
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Re: Latent action spaces in VLA models - why tokenize actions at all?

Post by noah_pate »

Agreed, and I'd add: Physical Intelligence's pi0 pairs a smaller pretrained vision-language backbone with a separate flow-matching 'action expert' module, which is one way to get fast, high-frequency action output without needing the whole giant language model to run at control-loop speed.
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