Title :
Ultrasonic-sensor deployment strategies and use of smartphone sensors for mobile robot navigation in indoor environment
Author :
Lim, Jungyoul ; Seok Ju Lee ; Tewolde, Girma ; Kwon, Joonsoo
Author_Institution :
Electr. & Comput. Eng., Kettering Univ., Flint, MI, USA
Abstract :
This paper presents deployment strategies of ultrasonic sensors and a way of using Smartphone sensors to help mobile robot navigation in indoor environments. There are critical needs for cost-effective, reliable, and fairly accurate solutions to meet the demands of indoor robotic applications. Ultrasonic sensors have been popular in detecting simple objects due to the low-cost and simplicity despite their limitations. We propose an efficient way of deployment of ultrasonic sensors for low-cost mobile robots. A Smartphone has many high performance sensors that can be utilized to navigate and localize mobile robots. The sensors include a camera, a gyroscope, and an accelerometer. We analyzed the use of orientation sensor of a Smartphone and compared its performance to a conventional approach. The comparison results were promising. The combination of the efficient way of the sensor deployment and the use of Smartphone sensors shows a possibility of developing a low-cost indoor mobile robotics platform for college education and robotics research laboratories.
Keywords :
accelerometers; control engineering computing; educational robots; gyroscopes; image sensors; mobile robots; motion control; robot vision; smart phones; ultrasonic applications; accelerometer; camera; college education; gyroscope; indoor environment; indoor robotic applications; low-cost mobile robots; mobile robot navigation; robotics research laboratories; sensor deployment; smartphone sensors; ultrasonic-sensor deployment strategies; Acoustics; Bluetooth; Mobile robots; Navigation; Robot sensing systems; Deployment of sensors; Indoor navigation; Mobile robot; Smartphone;
Conference_Titel :
Electro/Information Technology (EIT), 2014 IEEE International Conference on
Conference_Location :
Milwaukee, WI
DOI :
10.1109/EIT.2014.6871831