01689nas a2200157 4500000000100000000000100001008004100002100001700043700001700060700002600077245012200103856005100225300001200276490000700288520123600295 2016 d1 aSun-Chan Bae1 aWon-Suk Jang1 aMirosław Skibniewski00aReliability performance of wireless sensor networks for civil infrastructure – Part II: prediction and verification uhttp://dx.doi.org/10.3846/13923730.2014.948909 a243-2530 v223 a
AbstractApplication studies on wireless sensor networks (WSN) are actively conducted in the construction industry. However, there are several technical limitations including signal interference caused by the characteristics of wireless sensors, reliability degradation in wireless communication and uncertainty of configuring a network topology. This may lead to a decline in reliability and performance of real-time data acquisition methods. Thus, the paper developed a model capable of predicting reliability performance of wireless signals applied to civil infrastructures. The measured and predicted values of wireless signals are compared and analyzed through a field experiment carried out in an actual bridge to verify the prediction model suggested herein. As a result of the analysis, the prediction model demonstrated a variation up to 8.4% compared with actual measurements, proving the high accuracy of the prediction model. Furthermore, the reception rate at short distances within a 5 m radius is at least 90%, showing a highly reliable reception capacity. When this is applied to monitoring systems in the construction sector, it is believed that performance and reliability of such system can be secured.