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A paper was presented at OCEANS '15 on a new way of increasing the resiliency of a High Frequency radar network through the use of bistatic measurements. This was modeled on the Mid Atlantic Regional Association Coastal Ocean Observing System (MARACOOS) High Frequency Radar network. The bistatic operating system is a recent feature of the SeaSonde HF radar. The bistatic capability is a viable way...
Increasing the resiliency of High Frequency radar measurements has been a priority within the community for the past several years. One method to increase resiliency is through the use of a bistatic radar configuration, which is unique to the SeaSonde HF radar. This is achieved by separating the transmit and receive stations and then linking them through the Global Positioning System (GPS) reference...
The Physical Oceanographic Real-Time System (PORTS) is operated in 26 regions of the United States including New York/New Jersey Harbor. This system provides observations and predictions of water level, currents, salinity and meteorological parameters that are used by mariners to safely navigate the coastal waters. HF radar surface current measurements are a new data product available in three of...
The ephemeral nature of sea breeze makes it a challenging phenomenon to study. The sea breeze is an important wind resource that could potentially be harnessed to enhance coastal wind energy development. It is also an important force in coastal ocean dynamics and warrants further study. It would be convenient and inexpensive to study the sea breeze with HF radar, over broad spatial and temporal scales,...
Ocean wave conditions impact navigation, offshore operations, recreation, fisheries, safety of life at sea and hence the economic stability of any country’s maritime sector. Making accurate measurements of wave conditions will help validate wave models and will help with forecasts of the wave conditions over the next few days. The United States has put forth “A National Operational Wave Observation...
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