Motion Planning For Simple Two-Wheeled Robots,
2017
Loyola University Chicago
Motion Planning For Simple Two-Wheeled Robots, Ronald I. Greenberg, Jeffery M. Karp
Computer Science: Faculty Publications and Other Works
This paper considers various simple ways of navigating in a 2-dimensianal territory with a two-wheeled robot of a type typical in educational robotics. We determine shortest paths under various modes of operation and compare.
Multi-Scale Spatial Cognition Models And Bio-Inspired Robot Navigation,
2017
University of South Florida
Multi-Scale Spatial Cognition Models And Bio-Inspired Robot Navigation, Martin I. Llofriu Alonso
USF Tampa Graduate Theses and Dissertations
The rodent navigation system has been the focus of study for over a century. Discoveries made lately have provided insight on the inner workings of this system. Since then, computational approaches have been used to test hypothesis, as well as to improve robotics navigation and learning by taking inspiration on the rodent navigation system.
This dissertation focuses on the study of the multi-scale representation of the rat’s current location found in the rat hippocampus. It first introduces a model that uses these different scales in the Morris maze task to show their advantages. The generalization power of larger scales of …
The Following Robot,
2017
California Polytechnic State University, San Luis Obispo
The Following Robot, Juan D. Cerda, Matthew S. Kwan, Vi M. Le
Computer Engineering
The objective of this project is to design, build, and test an autonomous robot with an associated Android application. The robot uses on board inertial measurement sensors (magnetometer, accelerometer, gyroscope) and coordinates itself through Bluetooth communication with the similar builtin measurement sensors on the Android phone to mimic and follow movement. The Following Robot incorporates the same basic movement functionality as a typical RC car. The robot follows the user’s phone through an application on one’s phone. This application accesses the phone’s accelerometer and gyroscope data and translates into appropriate conversions. Methods of tracking and calculating distance or angular displacement …
Modeling Autonomous Vehicles Through Radio Controlled Cars,
2017
California Polytechnic State University, San Luis Obispo
Modeling Autonomous Vehicles Through Radio Controlled Cars, Eva S. Chen
Computer Engineering
Autonomous vehicles have a lot of potential in improving people’s everyday lives. They could reduce congestion, reduce collisions, enhance mobility, and more. But with these benefits come security and privacy risks. In order to research and test some of these risks, we are building a set of scale autonomous cars that can model autonomous and collaborative behaviors. One such behaviour would be platooning, where a group of vehicles can travel closely together at high speeds by following a lead car. We are doing this with various sensors and control algorithms to allow for future modularity.
Farmbot Rfid Integration,
2017
California Polytechnic State University, San Luis Obispo
Farmbot Rfid Integration, Laura R. Swart
Computer Engineering
The purpose of this project is to assist the company FarmBot improve their product by adding RFID tracking to the FarmBot robot. RFID tracking will allow the robot to select and pick up tool heads without any user interference.
Blend It Wine Blending Distribution System,
2017
California Polytechnic State University, San Luis Obispo
Blend It Wine Blending Distribution System, Connor Clarry, Russell Temple, Matt Moren
Mechanical Engineering
No abstract provided.
Wheelieking Trainer Project Report,
2017
California Polytechnic State University, San Luis Obispo
Wheelieking Trainer Project Report, Harold Hall Iii, Nathaniel Fox, Thomas Niemisto
Biomedical Engineering
In this report we will detail the design and implementation process of the WheelieKing Trainer project, a device that helps people learn how to do wheelies on a bicycle by preventing backward falls. Formal project requirements are specified, followed by the ideation and iteration process to meet those requirements. The components and methods used to create the device are described in detail. The results of the development process and usage test results of the device are included. Appendices at the end of this report include references, supporting analyses, and project management and timeline details.
Remote Cable Gantry,
2017
California Polytechnic State University, San Luis Obispo
Remote Cable Gantry, Allen L. Bailey
Electrical Engineering
The Remote Cable Gantry is a robotic system that was initially intended to aid in the art of aerial videography. It was designed to enable novice and expert users alike to capture both video footage and audio from perspectives unachievable by current methods. This system uses a series of cables to control the position of a camera gimbal in a defined 3D space and, as a self-contained unit, is portable and easy to use. The Remote Cable Gantry offers a quiet, intuitive, and safe alternative to existing technology, which has been limiting the market and potential of aerial photography and …
Light Sensing Automated Blinds,
2017
California Polytechnic State University, San Luis Obispo
Light Sensing Automated Blinds, Andrew B. Hodges, Ryan C. Flick
Electrical Engineering
This project is solving the problem of wasted energy within buildings and homes, because currently the lights turned on inside building do not utilize natural, ambient light from the sun. Rather than having unnecessary light from a light source, the automated light sensing smart blinds can sense the amount of light outside the window and in the room, and then adjust the angle of the blinds to save energy by utilizing the available outdoor light. This way, the light source will not be running at maximum power output while there is excess light coming through the window. This project aims …
Perception Of 3d Symmetrical And Near-Symmetrical Shapes,
2017
Purdue University
Perception Of 3d Symmetrical And Near-Symmetrical Shapes, Vijai Jayadevan, Aaron Michaux, Edward Delp, Zygmunt Pizlo
MODVIS Workshop
No abstract provided.
A Robotics Framework For Simulation And Control Of A Robotic Arm For Use In Higher Education,
2017
Southern Adventist University
A Robotics Framework For Simulation And Control Of A Robotic Arm For Use In Higher Education, Craig Christensen
MS in Computer Science Project Reports
Robotic arms have been in common use for a several decades now in many areas from manufacturing and industrial uses to hobby projects and amusement park rides. However, there have been very few attempts to make an inexpensive robot arm with a software stack for use in higher education. This paper will outline a control and interfacing software stack built on the Robot Operating System (ROS) and a simulation of the 5 degree of freedom (DoF) robotic arm.
Automation In Entertainment: Concept, Design, And Application,
2017
Fine and Performing Arts
Automation In Entertainment: Concept, Design, And Application, Ryan Thally
Undergraduate Honors Theses
The focus of this thesis is to explore the automation technology used in the modern entertainment industry. Upon completion of my thesis, I will deliver a working prototype of the chosen technology and present its capabilities in a choreographed show.
Models For Pedestrian Trajectory Prediction And Navigation In Dynamic Environments,
2017
California Polytechnic State University, San Luis Obispo
Models For Pedestrian Trajectory Prediction And Navigation In Dynamic Environments, Jeremy N. Kerfs
Master's Theses
Robots are no longer constrained to cages in factories and are increasingly taking on roles alongside humans. Before robots can accomplish their tasks in these dynamic environments, they must be able to navigate while avoiding collisions with pedestrians or other robots. Humans are able to move through crowds by anticipating the movements of other pedestrians and how their actions will influence others; developing a method for predicting pedestrian trajectories is a critical component of a robust robot navigation system. A current state-of-the-art approach for predicting pedestrian trajectories is Social-LSTM, which is a recurrent neural network that incorporates information about neighboring …
Software Updates To A Multiple Autonomous Quadcopter Search System (Maqss),
2017
California Polytechnic State University, San Luis Obispo
Software Updates To A Multiple Autonomous Quadcopter Search System (Maqss), Jared Speck, Toby Chan
Computer Engineering
A series of performance-based and feature implementation software updates to an existing multiple vehicle autonomous target search system is outlined in this paper. The search system, MAQSS, is designed to address a computational power constraint found on modern autonomous aerial platforms by separating real-time and computationally expensive tasks through delegation to multiple multirotor vehicles. A Ground Control Station (GCS) is also described as part of the MAQSS system to perform the delegation and provide a low workload user interface. Ultimately, the changes to MAQSS noted in this paper helped to improve the performance of the autonomous search mission, the accuracy …
Detection Of Pheromone Laying Event In Foraging Data Of Harvester Ants Using Change Point Analysis Method,
2017
University of New Mexico - Main Campus
Detection Of Pheromone Laying Event In Foraging Data Of Harvester Ants Using Change Point Analysis Method, Safeeul Bashir Safee
Computer Science ETDs
Communication is an important factor in the foraging performance of social insects, such as ants. During foraging, ants keep track of food sources by using memory (site fidelity) or by communicating through pheromones. Previous field experiments showed that the rate of seed collection depends on the distribution of food in the environment. If food is spatially clustered, then it is beneficial for ants recruit nest mates to collect seeds from large clusters. However, we do not know when the recruitment occurs in natural ant population. To explore this question, we used a power law distribution to arrange seeds in piles …
An Approach To Robust Homing With Stereovision,
2017
Fordham University
An Approach To Robust Homing With Stereovision, Fuqiang Fu, Damian Lyons
Faculty Publications
Visual Homing is a bioinspired approach to robot navigation which can be fast and uses few assumptions. However, visual homing in a cluttered and unstructured outdoor environment offers several challenges to homing methods that have been developed for primarily indoor environments. One issue is that any current image during homing may be tilted with respect to the home image. The second is that moving through a cluttered scene during homing may cause obstacles to interfere between the home scene and location and the current scene and location. In this paper, we introduce a robust method to improve a previous developed …
Pythagorean Approximations For Lego: Merging Educational Robot Construction With Programming And Data Analysis,
2017
Loyola University Chicago
Pythagorean Approximations For Lego: Merging Educational Robot Construction With Programming And Data Analysis, Ronald I. Greenberg
Computer Science: Faculty Publications and Other Works
Abstract. This paper can be used in two ways. It can provide reference information for incorporating diagonal elements (for bracing or gear meshing) in educational robots built from standard LEGO kits. Alternatively, it can be used as the basis for an assignment for high school or college students to recreate this information; in the process, students will exercise skills in both computer programming and data analysis. Using the paper in the second way can be an excellent integrative experience to add to an existing course; for example, the Exploring Computer Science high school curriculum concludes with the units “Introduction to …
Orthoplanar Spring Based Compliant Force/Torque Sensor For Robot Force Control,
2017
University of South Florida
Orthoplanar Spring Based Compliant Force/Torque Sensor For Robot Force Control, Jerry West
USF Tampa Graduate Theses and Dissertations
A compliant force/torque sensor for robot force control has been developed. This thesis presents methods of designing, testing, and implementing the sensor on a robotic system. The sensor uses an orthoplanar spring equipped with Hall-effect sensors to measure one component of force and two moment components. Its unique design allows for simple and cost effective manufacturing, high reliability, and compactness. The device may be used in applications where a robot must control contact forces with its environment, such as in surface cleaning tasks, manipulating doors, and removing threaded fasteners. The compliant design of the sensor improves force control performance and …
Autonomous Uav Navigation In An Indoor Environment For Warehouse Inventory Recording,
2017
University of Nebraska at Omaha
Autonomous Uav Navigation In An Indoor Environment For Warehouse Inventory Recording, Venkat Ramana Reddy Garlapati
UNO Student Research and Creative Activity Fair
UAV’s are currently used extensively in outdoor environments for various applications, including wildfire monitoring, and agricultural surveying, their use in indoor applications have been fairly restricted, owing mainly to the difficulty to maneuver them in smaller indoor spaces and the inability to use GPS-based navigation system. Nevertheless, there are many indoor applications where UAVs could provide a safe, reliable and resilient means to perform operations that are dangerous for humans such as surveillance inside chemical plants, inventory scanning in cold storages etc., Autonomous UAV navigation in an indoor environment can be achieved by finding a collision-free flight path to pass …
Session D-3: Robotics Programming Using Java,
2017
Illinois Mathematics and Science Academy
Session D-3: Robotics Programming Using Java, Pat Patankar
Professional Learning Day
I will discuss how to program NXT kit with various sensors using Java programming language.
