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In place of a conventional bread-boarded prototype, we used distributed communicating processes to allow software and simulated hardware to interact.
For our real-time prototype we used a PC running Microsoft Windows XP as a base.
To build our prototype, we used the NI USRP-2942 [20] which contains a Xilinx Kintex 7 FPGA.
For a performance evaluation of our prototype we used a test dataset consisting of values taken from the list of Medical Subject Headings (MeSH) [25].
To perform the tests with the prototype, we used two mini-computers with an Intel Dual Core T3200 2 GHz processor and 4 GB of RAM.
Therefore, for the non-personalized Context Aware Recommendations at the current release of ArchReco prototype we used samples of input data that was collected by the evaluation participants and we used them as comparison dataset for the computation of Precision (Eq. 2) - Recall (Eq. 3) measurements for the two recommendation algorithms.
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In our current prototype, we use a commercial image labeling Web service called IQ Engines [3]. 3.
In the prototype, we use small Gumstix Overo Earth COMa single-board computers having a 600 MHz ARM Cortex-A8 CPU as the PNs.
Contrary to the ideal case where ROM code can be modified, for the TrustCAM prototype we use a slightly different boot procedure.
In our prototype, we use TCP/IP network communication method between the GPU-Admin and the GPU-Manager to utilize the virtue of its well-defined and concrete interfaces.
During prototyping we used Zero configuration networking (Zeroconf) [15], a protocol originated on a IETF working group.
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