HR: 16:15h
AN: IN14A-02 INVITED [Abstracts]
TI: Mobile Networked Sensors for Environmental Observatories
AU: * Kaiser, W J
EM: kaiser@ee.ucla.edu
AF: University of California, Los Angeles, 405 N. Hilgard, Los Angeles, CA 90077
United States
AB:
The development of the first embedded networked sensing (ENS) systems has been rapidly followed by their successful
deployment for investigations in environments ranging from forest ecosystems, to rivers and lakes, and to subsurface soil
observations. As ENS systems have been deployed, many technology challenges have been successfully addressed. For example,
the requirements for local and remote data access and long operating life have been encountered and solved with a novel
hierarchical network architecture and unique, low power platforms. This presentation will describe this progress and also the
development and applications of a new ENS system addressing the most current challenges: A robotic ENS platform providing
precise, reliable, and sustained observation capability with diverse sensing capabilities that may adapt to environmental
dynamics.
In the development of methods for autonomous observation by networked sensors, many applications have emerged requiring
spatially and temporally intensive data sampling. Examples include the mapping of forest understory solar radiation,
autonomous acquisition of imaging for plant phenology, and mapping of contaminant concentration in aquatic systems. Common
to these applications is the need to actively and continuously configure the location and orientation of sensors for high
fidelity mapping of the spatial distribution of phenomena. To address this primary environmental observation need, a new
sensing platform, Networked Infomechanical Systems (NIMS) has been developed. NIMS relies on deployed aerial infrastructure
(for example, cable suspension systems) in the natural environment to permit robotic devices to precisely and reliably move
or remain stationary as required at elevations that may lie directly in or above the forest canopy or within a river or
stream. NIMS systems are suspended to allow devices to translate a sensor node horizontally, and also to raise and lower
devices. Examples of sensors that are now carried by NIMS include sensors for visible wavelength imaging, thermal infrared
temperature mapping, microclimate, solar radiation, and for water quality and physical characterization of aquatic systems.
NIMS devices include compact embedded computing, wireless network connectivity to surrounding static sensors, and remote
Internet access. Exploiting this onboard computing allows NIMS devices to follow precise scanning protocols and
self-calibration procedures.
This presentation will describe permanent facility NIMS systems deployed at the James San Jacinto Mountains Reserve. Rapidly
deployable NIMS permitting short term, highly mobile experiments will also be discussed. This includes the Thermal Mapper
system that simultaneously samples plant physical structure (using laser position sensing and imaging) along with plant
surface temperature (using high spatial resolution thermal infrared sensing). This compact system has been applied to the
investigation of thermal characteristics of alpine plants in varying soil surfaces at the White Mountains Research Station.
Other NIMS applications and results to be described include novel spatial mapping of nitrate concentration and other
variables in flowing streams. Finally, this presentation will also address the many future applications of observatories
linking investigators with remote mobile and static sensor networks.
This research is supported by the NSF0331481 ITR program. Research has been performed in collaboration with R. Ambrose, K.
Bible, D. Estrin, E. Graham, M. Hamilton, M. Hanson, T. Harmon, G. Pottie, P. Rundel, M. Srivastava, and G. Sukhatme
DE: 0452 Instruments and techniques
DE: 0476 Plant ecology (1851)
DE: 0483 Riparian systems (0744, 1856)
DE: 0496 Water quality
DE: 1895 Instruments and techniques: monitoring
SC: Earth and Space Science Informatics [IN]
MN: Fall Meeting 2005