Native Process Migration in Wireless Sensor Networks
Author(s) -
Syed Ishtiaq Hussain,
Huma Javed,
Tehseen Khan,
Sara Shazad,
Falak Naz Khalil
Publication year - 2015
Publication title -
international journal of distributed sensor networks
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.324
H-Index - 53
eISSN - 1550-1477
pISSN - 1550-1329
DOI - 10.1155/2015/607143
Subject(s) - computer science , wireless sensor network , process (computing) , process migration , architecture , node (physics) , live migration , embedded system , computer network , virtual machine , distributed computing , virtualization , operating system , cloud computing , art , structural engineering , engineering , visual arts
This paper presents a novel architecture for native process migration (PM) in wireless sensor networks (WSNs) without the use of virtual execution environment. Resources in WSN are scarce; therefore creating virtual execution environment puts extra burden on already stringent resources. In addition, the proposed architecture is migrating with complete process instead of code only which also saves resources. The proposed architecture makes process migration decisions by continuously monitoring resources, such as remaining battery life and free memory space on a node. The architecture is suitable for networks with fewer expensive sensor nodes as it allows for better utilization of network resources. Transferring a live executing process from one node to another to meet processing demands dynamically improves fault tolerance, resource utilization, and network management in WSN. The architecture has been successfully tested and implemented on both COOJA simulator and a test bed of TelosB motes.
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