Skip to the main content

Preliminary communication

https://doi.org/10.32985/ijeces.9.1.2

An Event-Driven Multiple Objects Surveillance System

Saeed Mina Qaisar orcid id orcid.org/0000-0002-4268-3482 ; Effat University, Jeddah, KSA College of Engineering, Department of Electrical and Computer Engineering Jeddah, Saudi Arabia
Dija Sidiya ; Effat University, Jeddah, KSA College of Engineering, Department of Electrical and Computer Engineering Jeddah, Saudi Arabia
Mohammad Akbar ; Effat University, Jeddah, KSA College of Engineering, Department of Electrical and Computer Engineering Jeddah, Saudi Arabia
Abdulhamit Subasi ; Effat University, Jeddah, KSA College of Engineering, Department of Information Systems Jeddah, Saudi Arabia


Full text: english pdf 916 Kb

page 35-44

downloads: 605

cite


Abstract

Traditional surveillance systems are constrained because of a fixed and preset pattern of monitoring. It can reduce the reliability of the system and cause an increased generation of false alarms. It results in an increased processing activity of the system, which causes an augmented consumption of system resources and power. Within this framework, a human surveillance system is proposed based on the event-driven awakening and self-organization principle. The proposed system overcomes these downsides up to a certain level. It is achieved by intelligently merging an assembly of sensors with two cameras, actuators, a lighting module and cost-effective embedded processors. With the exception of low-power event detectors, all other system modules remain in the sleep mode. These modules are activated only upon detection of an event and as a function of the sensing environment condition. It reduces power consumption and processing activity of the proposed system. An effective combination of a sensor assembly and a robust classifier suppresses generation of false alarms and improves system reliability. An experimental setup is realized in order to verify the functionality of the proposed system. Results confirm proper functionality of the implemented system. A 62.3-fold system memory utilization and bandwidth consumption reduction compared to traditional counterparts is achieved, i.e. a result of the proposed system self-organization and event-driven awakening features. It confirms that the proposed system outperforms its classical counterparts in terms of processing activity, power consumption and usage of resources.

Keywords

Event-driven awakening; embedded processing; face detection; resources utilization; surveillance

Hrčak ID:

214198

URI

https://hrcak.srce.hr/214198

Publication date:

27.12.2018.

Visits: 1.440 *