Beyond voice and message communication, mobile devices are exploiting to access Internet resources like desktop. Nowadays, MobileApp development and its usage in various domains are also significantly rising. However,...
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Beyond voice and message communication, mobile devices are exploiting to access Internet resources like desktop. Nowadays, MobileApp development and its usage in various domains are also significantly rising. However, resource constraints of mobile devices like limited processing power, low storage, restricted memory and faster dissipation of energy have restricted resource intensive mobile application development and its accessibility. Cloud based mobile resource augmentation needs longer latency time due to larger number of intermediate hubs thereby prolonged execution time and deterioration of energy from mobile devices;hence, we are exploiting proximate computing entities for augmenting resources of the mobile devices by employing soft computing methodologies. The proposed proximate computing framework is intended to augment the resource scarcity of mobile devices by outsourcing their data and processing to an external proximate computing entity like an edge cloud, raspberry pi controller, Arduino, WiFi Gateway and MNO cloud. An intelligent inventory checker mobile application which is based on the proposed framework, depicts significant mitigates in execution time and energy consumption of mobile devices. Proximate computing entities namely Arduino and Edge Cloud service have provided computation as a service to check the reorder level of every stock thereby providing seamless user experience to the mobile users. This research work provides a feasible solution for the development of resource intensive mobile application and its accessibility by mobile user regardless of the resource scarcity of mobile device.
Throttle and brake control system implemented as an Anti-braking system with several modes of operation during normal and emergency conditions is available. However, using an intelligent system to support seamless mot...
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ISBN:
(纸本)9781450362894
Throttle and brake control system implemented as an Anti-braking system with several modes of operation during normal and emergency conditions is available. However, using an intelligent system to support seamless motion of physically challenged people and senior citizens in heavy traffic is an emerging area of research. In this paper, an intelligent vehicle control system with adaptive throttle and brake control is proposed. A self-controlled and self-managed vehicle for physically disabled using various sensors and raspberry pi controller is developed. The adaptive model controls the throttle valve using motor based Proportional-Derivative (PD) Control. It uses high torque servo motors to pull the brake pedal to the desired level using automated torque control. Firmware is implemented to integrate the brake and the speed control using Rule-based algorithms that function based on the sensed traffic surroundings at high accuracy without jerk and steady-state error. A brake test is performed to examine the performance of the proposed model under loaded conditions of the support vehicle. The proposed model yields better results in contrast to the existing ones.
Normally tourist guides will be accompanying with the tourists on hire and sometimes the language of the guide may not accustom with the tourist's expectation. The product we suggest is a hand held device which ta...
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Normally tourist guides will be accompanying with the tourists on hire and sometimes the language of the guide may not accustom with the tourist's expectation. The product we suggest is a hand held device which takes the GPS location and if we require the information about that location then it will be briefed through the hand held tourist guide device in English language and in native language. Voice info also given through speaker. Also the tourist can be tracked in remote locations too. In this paper, we have designed and developed a system that will be helpful when visiting some new places and cities. This sys-tem utilizes the GPS module to get the current location and suggest the list of tourist places near that location. And it displays the picture and how far those places from the current location in km. It incor-porates a tiny GPS module Neo-6 m, 3.5 in. TFT display and raspberry pi controller board. Audio system involved to provide the voice over about the location via the speaker. (c) 2021 Elsevier Ltd. All rights reserved. Selection and peer-review under responsibility of the scientific committee of the 12th National Confer-ence on Recent Advancements in Biomedical Engineering.
In automotive system design, the estimation of the distance is a crucial task, with respect to the autonomous vehicle perception module. The range sensors like LiDAR, RADAR, Ultrasonic sensors, etc. have widely been u...
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Normally tourist guides will be accompanying with the tourists on hire and sometimes the language of the guide may not accustom with the tourist’s expectation. The product we suggest is a hand held device which takes...
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Normally tourist guides will be accompanying with the tourists on hire and sometimes the language of the guide may not accustom with the tourist’s expectation. The product we suggest is a hand held device which takes the GPS location and if we require the information about that location then it will be briefed through the hand held tourist guide device in English language and in native language. Voice info also given through speaker. Also the tourist can be tracked in remote locations too. In this paper, we have designed and developed a system that will be helpful when visiting some new places and cities. This system utilizes the GPS module to get the current location and suggest the list of tourist places near that location. And it displays the picture and how far those places from the current location in km. It incorporates a tiny GPS module Neo-6 m, 3.5 in. TFT display and raspberry pi controller board. Audio system involved to provide the voice over about the location via the speaker.
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