Taniwaki et al., 2008 - Google Patents
Walking behaviour of a hexapod robot using a wind direction detectorTaniwaki et al., 2008
- Document ID
- 8365117322718060920
- Author
- Taniwaki M
- Iida M
- Kang D
- Tanaka M
- Izumi T
- Umeda M
- Publication year
- Publication venue
- Biosystems engineering
External Links
Snippet
A hexapod robot was developed to explore a field and gather agronomic data such as soil nutrients, temperature, humidity and plant growth. The robot was navigated by using a wind direction detector consisting of four airflow sensors. The hexapod robot successfully …
- 241000238631 Hexapoda 0 title abstract description 43
Classifications
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D1/00—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot
- G05D1/02—Control of position or course in two dimensions
- G05D1/021—Control of position or course in two dimensions specially adapted to land vehicles
- G05D1/0231—Control of position or course in two dimensions specially adapted to land vehicles using optical position detecting means
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D1/00—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot
- G05D1/02—Control of position or course in two dimensions
- G05D1/021—Control of position or course in two dimensions specially adapted to land vehicles
- G05D1/0255—Control of position or course in two dimensions specially adapted to land vehicles using acoustic signals, e.g. ultra-sonic singals
-
- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05D—SYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
- G05D1/00—Control of position, course or altitude of land, water, air, or space vehicles, e.g. automatic pilot
- G05D1/02—Control of position or course in two dimensions
- G05D1/021—Control of position or course in two dimensions specially adapted to land vehicles
- G05D1/0268—Control of position or course in two dimensions specially adapted to land vehicles using internal positioning means
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25J—MANIPULATORS; CHAMBERS PROVIDED WITH MANIPULATION DEVICES
- B25J9/00—Programme-controlled manipulators
- B25J9/16—Programme controls
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| Ismail et al. | Obstacle-avoiding robot with IR and PIR motion sensors | |
| Bayer et al. | On autonomous spatial exploration with small hexapod walking robot using tracking camera intel realsense t265 | |
| Shalal et al. | Orchard mapping and mobile robot localisation using on-board camera and laser scanner data fusion–Part B: Mapping and localisation | |
| Ruckelshausen et al. | BoniRob: an autonomous field robot platform for individual plant phenotyping | |
| Nahar et al. | Robot tendrils: Long, thin continuum robots for inspection in space operations | |
| Hutter et al. | Towards a generic solution for inspection of industrial sites | |
| Durmuş et al. | Data acquisition from greenhouses by using autonomous mobile robot | |
| Tsai et al. | Use of ultrasonic sensors to enable wheeled mobile robots to avoid obstacles | |
| Çavaş et al. | A review on spider robotic system | |
| Mwitta et al. | The integration of GPS and visual navigation for autonomous navigation of an Ackerman steering mobile robot in cotton fields | |
| Stager et al. | Design and construction of unmanned ground vehicles for sub-canopy plant phenotyping | |
| Iida et al. | Localization of CO2 source by a hexapod robot equipped with an anemoscope and a gas sensor | |
| Mukherjee et al. | Obstacle-avoiding intelligent algorithm for quad wheel robot path navigation | |
| He et al. | Multi-sensory olfactory quadruped robot for odor source localization | |
| Fujinaga | Autonomous navigation method for agricultural robots in high-bed cultivation environments | |
| Taniwaki et al. | Walking behaviour of a hexapod robot using a wind direction detector | |
| EP3312576A1 (en) | A photodetector compensating circuit | |
| Chen et al. | Autonomous visual navigation for quadruped robot in farm operation | |
| Gerdan Koc et al. | Development and Performance Analysis of an Autonomous Agricultural Vehicle for Fruit Transportation | |
| Sharifi et al. | Mechatronics for a LiDAR-based mobile robotic platform for pasture biomass measurement | |
| Martinez et al. | Rapidly exploring random trees for autonomous navigation in observable and uncertain environments | |
| Daltorio et al. | A stochastic algorithm for explorative goal seeking extracted from cockroach walking data | |
| Wettergreen et al. | Long-distance autonomous survey and mapping in the robotic investigation of life in the atacama desert | |
| Nurmaini et al. | A new navigation of behavior-based olfactory mobile robot | |
| Ordonez et al. | Characterization and traversal of pliable vegetation for robot navigation |