Title :
Robustness of Receiver-Driven Multi-hop Wireless Network with Soft-State Connectivity Management
Author :
Kominami, Daichi ; Sugano, Masashi ; Murata, Masyuki ; Hatauchi, T.
Author_Institution :
Grad. Sch. of Inf. Sci. & Technol., Osaka Univ., Suita, Japan
Abstract :
Energy saving and ensuring robust data collection are the big subjects in realization of wireless sensor networks. In the intermittent receiver-driven data transmission (IRDT) protocol, which aims to save energy and get high reliability, communication between nodes commences when multiple receiver nodes transmit their own IDs intermittently and a sender node receives them. In this paper, we focused on the analogy between this periodic ID-transmission and a periodic message in the soft-state management. Soft state is often considered to have robustness against failures, therefore, we introduce it to IRDT for constructing a robust network. We propose a soft-state management of routing tables in IRDT, where each node uses the periodic ID-transmission not only for communication but also for update of a routing table. By computer simulation, we show that IRDT can achieve a 43.5% improvement in robustness against a sink node failure. Moreover, we show that the receiver-driven asynchronous intermittent transmission protocol suits for the soft-state management through comparison with the sender-driven asynchronous intermittent transmission protocol.
Keywords :
telecommunication network management; telecommunication network reliability; telecommunication network routing; transport protocols; wireless sensor networks; energy saving; intermittent receiver-driven data transmission protocol; multiple receiver nodes; periodic ID-transmission; periodic message; receiver-driven asynchronous intermittent transmission protocol; receiver-driven multihop wireless network; robust data collection; routing tables; sender node; sender-driven asynchronous intermittent transmission protocol; sink node; soft-state connectivity management; wireless sensor networks; Data models; Energy consumption; Media Access Protocol; Modulation; Multiaccess communication; Open systems; Routing; intermittent operation; robustness; sensor network; soft state;
Conference_Titel :
Systems and Networks Communications (ICSNC), 2010 Fifth International Conference on
Conference_Location :
Nice
Print_ISBN :
978-1-4244-7789-0
Electronic_ISBN :
978-0-7695-4145-7
DOI :
10.1109/ICSNC.2010.13