1. Home
  2. spiral motion

Micromachines, Free Full-Text

$ 22.99

5 (460) In stock

Several robot-related studies have been conducted in recent years; however, studies on the autonomous travel of small mobile robots in small spaces are lacking. In this study, we investigate the development of autonomous travel for small robots that need to travel and cover the entire smooth surface, such as those employed for cleaning tables or solar panels. We consider an obstacle-available surface and target this travel on it by proposing a spiral motion method. To achieve the spiral motion, we focus on developing autonomous avoidance of obstacles, return to original path, and fall prevention when robots traverse a surface. The development of regular travel by a robot without an encoder is an important feature of this study. The traveled distance was measured using the traveling time. We achieved spiral motion by analyzing the data from multiple small sensors installed on the robot by introducing a new attitude-control method, and we ensured that the robot returned to the original spiral path autonomously after avoiding obstacles and without falling over the edge of the surface.

SOLUTION: MEMS: A pollution free option for power generation - Studypool

Micro Machines Deluxe - JOE'S CURIOS

Micromachines, Free Full-Text

Micro Machines Deluxe - JOE'S CURIOS

Mechanically interlocked 3D multi-material micromachines

Ismatec IPC Digital Peristaltic Pumps Channels: 24; Power: 115 VAC

Micro but Many – Micro Machines' history and influence

Micromachines, Free Full-Text, mini led

Micro Machines

Let's Talk About Micro Machines V3 – Blimey, boyo