#quadrupedrobotchallenges search results

The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.

IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.
IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.
IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.
IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.

Day 4/32: Proving OM1’s Hardware-Agnostic Claim Today, we prove the core promise: OM1 runs the same AI software on any robot body. 1. The Challenge: Running identical AI on wildly different hardware (e.g. a quadruped vs. a humanoid) requires abstracting all physical…

Preciou73024664's tweet image. Day 4/32: Proving OM1’s Hardware-Agnostic Claim

Today, we prove the core promise: OM1 runs the same AI software on any robot body.

1. The Challenge: Running identical AI on wildly different hardware (e.g. a quadruped vs. a humanoid) requires abstracting all physical…

Day 3/32: OM1 Architecture: The AI-Native Brain We go inside the OM1 OS—the core that makes robots think. What makes OM1 an AI-Native OS? 1. Intelligence-First Design Built from Day One with an LLM at the center for reasoning and adaptation. It replaces old, rigid, rule-based…

Preciou73024664's tweet image. Day 3/32: OM1 Architecture: The AI-Native Brain

We go inside the OM1 OS—the core that makes robots think.

What makes OM1 an AI-Native OS?

1. Intelligence-First Design
Built from Day One with an LLM at the center for reasoning and adaptation. It replaces old, rigid, rule-based…


Just when we think we've finally beaten the robot, it gets up to attack again! Why won't you just stay down! Richard steps in, hoping to repent by giving us time to escape. Then, at the last moment, Cassius appears, giving us an opening to finish the monstrous machine for good!

Garhom13's tweet image. Just when we think we've finally beaten the robot, it gets up to attack again! Why won't you just stay down! Richard steps in, hoping to repent by giving us time to escape. Then, at the last moment, Cassius appears, giving us an opening to finish the monstrous machine for good!
Garhom13's tweet image. Just when we think we've finally beaten the robot, it gets up to attack again! Why won't you just stay down! Richard steps in, hoping to repent by giving us time to escape. Then, at the last moment, Cassius appears, giving us an opening to finish the monstrous machine for good!
Garhom13's tweet image. Just when we think we've finally beaten the robot, it gets up to attack again! Why won't you just stay down! Richard steps in, hoping to repent by giving us time to escape. Then, at the last moment, Cassius appears, giving us an opening to finish the monstrous machine for good!
Garhom13's tweet image. Just when we think we've finally beaten the robot, it gets up to attack again! Why won't you just stay down! Richard steps in, hoping to repent by giving us time to escape. Then, at the last moment, Cassius appears, giving us an opening to finish the monstrous machine for good!

Yes, this is a real quadruped robot from YUHA AI, leveraging machine learning algorithms for dynamic balance, gait control, and terrain adaptation. While demos like this may follow pre-set paths, its core locomotion relies on AI rather than simple remote operation. Impressive…


Quadruped robots are gaining widespread adoption. People ask: Why do we need them? Why not use mobile (wheeled) robots or humanoids? Reality: We absolutely do need them. To navigate sites not designed for us humans. 👉More on this in comments. #Robot #Robotics

boringsage's tweet image. Quadruped robots are gaining widespread adoption.

People ask: Why do we need them?

Why not use mobile (wheeled) robots or humanoids?

Reality: We absolutely do need them. To navigate sites not designed for us humans. 

👉More on this in comments.

#Robot #Robotics

Please check our Discord for updates on the room location!! UNT Robotics is holding a general meeting this Wednesday from 7-9 PM in Discovery Park! We will be coding this robotic quadruped using C++ ! This workshop is open for all students, no experience required!

UNTRobotics's tweet image. Please check our Discord for updates on the room location!!

UNT  Robotics is holding a general meeting this Wednesday from 7-9 PM in  Discovery Park! We will be coding this robotic quadruped using C++ !  This workshop is open for all students, no experience required!
UNTRobotics's tweet image. Please check our Discord for updates on the room location!!

UNT  Robotics is holding a general meeting this Wednesday from 7-9 PM in  Discovery Park! We will be coding this robotic quadruped using C++ !  This workshop is open for all students, no experience required!

If we're worried about robots j-walking into intersections, yes. Now, in matters of warfare: It'd be far more worrisome to encounter quad-pedalled Adversaries. Lower profiles, more stable, able to carry practically carry more weight, etc. Think "Black Mirror- Metalhead"


We're gonna do things a bit differently this time around. No teams, no voting; get last in a challenge and you're out. Your first challenge is to stay on this balance beam!


⠀ ⠀𓏲⠀┈⠀( she’s not sure if he’d be interested in that , but she’s pulling out her phone to show him a video anyway . )⠀𓏏𓏏 ⠀⠀ ⠀❛⠀look ! they put them in these obstacle courses , and the teams who built them worked their robot through it ! isn’t that cool ?⠀❜⠀꜆ ⠀


It's now actually not that unusual to see quadruped robots that have powered wheels for feet, allowing them to either walk or roll as the situation dictates. The modular D1 is different. It can operate as either 1 quadruped or 2 self-balancing bipeds. hubs.la/Q03T94Nz0


そうですね〜 今回は上半身にしましたが、 下半身にもなるし、 いたるところが分割できるので 四肢を全て別のロボから移植できたりもします。 綺麗なキューブにするのも何度か反復練習が必要だし時間が溶けますね〜🫠🫠


複雑で離散的(不連続)な地形を高速で横断する四足歩行ロボット youtu.be/EZbM594T3c4 #quadrupedal #robot #dynamic #agile #HighSpeed #control #navigation #GenerativeModel #NeuralNetwork #RaiLab #Kaist


It's because a quadruple amputee can't move around without assistance , giving it a major control element


今までの復習① 平行四辺形の脚部構造の4脚ロボットを作成し、歩行モーションなども作成。 トルクがありそうなので、アームなどを搭載しようと発想。

ロボットアームを載せる想定で荷重テスト。 600mLのペットボトル載せても余裕な歩行ができた。



Testing my new Blender hard-surface workflow using a 120+ piece mech kitbash. Built a full quadruped robot using only kit parts. Fast, clean, fully adjustable. This workflow cuts the boring rebuild work out completely.


유튜브에 영상이 있는 quadruped 로봇이 최소 100종은 넘는 것 같다.


Please please do this, How are you going to address pushback from the entire healthcare and likely to a higher degree the insurance industry? Also, will you create specific Optimus( Doctimus would be perfect) units built specifically as full range medical care providers im…


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The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.

IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.
IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.
IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.
IITalk's tweet image. The Dynamic Legged Systems Lab is participating during these day at #ICRA2023 in the first edition of the #QuadrupedRobotChallenges (QRC), a series of competitive events that will range from the remote control of #quadrupedrobots to #autonomousmobility over challenging terrain.

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