TY - GEN
T1 - Testbed design and localization in MiNT-2
T2 - 1st International Conference on Communication Systems and Networks and Workshops, COMSNETS 2009
AU - Munishwar, Vikram P.
AU - Singh, Shailendra
AU - Wang, Xiaoshuang
AU - Gopalan, Kartik
AU - Abu-Ghazaleh, Nael B.
AU - Mitchell, Christopher
PY - 2009
Y1 - 2009
N2 - A significant challenge in the development of robust wireless networking protocols is often the need to prototype and test these protocols in a small-scale setting before they can be widely deployed. Two contrasting prototyping and testing methods are currently used, requiring a choice between con-venience and accuracy. The first involves simulating a wireless network solely in software. Although convenient, this option fails to accurately account for real-world factors such as realistic radio propagation models and their interaction with node mobility and obstacles. The second relies on setting up a large-scale physical testbed that, although accurate, represents a single design point and tends to be expensive to reconfigure and manage. The MiNT project at Stony Brook University was one of the first to propose an accurate and inexpensive small-scale physical testbed built using commercially-available robots coupled with a version of NS2 built to work cooperatively on multiple nodes. MiNT combines the b st features of the two popular performance evaluation methods, achieving network accuracy comparable to that of large-scale physical testbeds without abandoning the convenience and flexibility of software simulation. In this paper, we describe our initial experiences in developing MiNT-2, the next generation of MiNT. MiNT-2 represents a fresh redesign of MiNT that at once simplifies and improves the original design, and extends it with a range of new features. The paper describes a number of these improvements including a new, simplified, node design, an improved node localization using RFIDs, node position calibration, and automated layout configuration. We also demonstrate the accuracy of the new localization approach and outline planned testbed improvements.
AB - A significant challenge in the development of robust wireless networking protocols is often the need to prototype and test these protocols in a small-scale setting before they can be widely deployed. Two contrasting prototyping and testing methods are currently used, requiring a choice between con-venience and accuracy. The first involves simulating a wireless network solely in software. Although convenient, this option fails to accurately account for real-world factors such as realistic radio propagation models and their interaction with node mobility and obstacles. The second relies on setting up a large-scale physical testbed that, although accurate, represents a single design point and tends to be expensive to reconfigure and manage. The MiNT project at Stony Brook University was one of the first to propose an accurate and inexpensive small-scale physical testbed built using commercially-available robots coupled with a version of NS2 built to work cooperatively on multiple nodes. MiNT combines the b st features of the two popular performance evaluation methods, achieving network accuracy comparable to that of large-scale physical testbeds without abandoning the convenience and flexibility of software simulation. In this paper, we describe our initial experiences in developing MiNT-2, the next generation of MiNT. MiNT-2 represents a fresh redesign of MiNT that at once simplifies and improves the original design, and extends it with a range of new features. The paper describes a number of these improvements including a new, simplified, node design, an improved node localization using RFIDs, node position calibration, and automated layout configuration. We also demonstrate the accuracy of the new localization approach and outline planned testbed improvements.
UR - https://www.scopus.com/pages/publications/66549095725
U2 - 10.1109/COMSNETS.2009.4808866
DO - 10.1109/COMSNETS.2009.4808866
M3 - Conference contribution
SN - 9781424429127
T3 - 1st International Conference on Communication Systems and Networks and Workshops, COMSNETS 2009
BT - 1st International Conference on Communication Systems and Networks and Workshops, COMSNETS 2009
Y2 - 5 January 2009 through 10 January 2009
ER -