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 <channel rdf:about="http://ebiquity.umbc.edu//tags/html/?t=signal+processing">
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  <title><![CDATA[UMBC ebiquity RSS Tag Search]]></title>
  <link><![CDATA[http://ebiquity.umbc.edu//tags/html/?t=signal+processing]]></link>
  <description><![CDATA[UMBC ebiquity RSS Tag Search for signal processing]]></description>
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      <rdf:li resource="http://ebiquity.umbc.edu/event/html/id/363/Hyperspectral-Imaging-an-Emerging-Technique-in-Remote-Sensing"/>
      <rdf:li resource="http://ebiquity.umbc.edu/event/html/id/359/LEAN-Mapping-research-experience-at-a-game-company"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/891/Compressive-Geospatial-Analytics"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/845/Quantum-Annealing-Based-Binary-Compressive-Sensing-with-Matrix-Uncertainty"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/791/Fault-tolerant-variable-block-carry-skip-logic-vbcsl-using-parity-preserving-reversible-gates"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/795/Low-cost-quantum-realization-of-reversible-multiplier-circuit"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/793/Fault-tolerant-reversible-logic-synthesis-Carry-look-ahead-and-carry-skip-adders"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/794/Synthesis-of-fault-tolerant-reversible-logic-circuits"/>
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 <item rdf:about="http://ebiquity.umbc.edu/event/html/id/363/Hyperspectral-Imaging-an-Emerging-Technique-in-Remote-Sensing">
  <title><![CDATA[Hyperspectral Imaging: an Emerging Technique in Remote Sensing]]></title>
  <link>http://ebiquity.umbc.edu/event/html/id/363/Hyperspectral-Imaging-an-Emerging-Technique-in-Remote-Sensing</link>
  <description><![CDATA[Hyperspectral imaging has expanded capability of multispectral imaging
in many prospects. Specifically, it changes many ways how algorithms
are designed from traditional spatial-domain (literal) analysis to
spectral-domain (non-literal) analysis. This is mainly due to the fact
that many unknown substances which cannot be identified by visual
inspection or prior knowledge can now be uncovered by high spectral
resolution provided by hyperspectral imagery. It is particularly
evidential in...]]></description>
  <dc:date>2010-09-17</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/event/html/id/359/LEAN-Mapping-research-experience-at-a-game-company">
  <title><![CDATA[LEAN Mapping: research experience at a game company]]></title>
  <link>http://ebiquity.umbc.edu/event/html/id/359/LEAN-Mapping-research-experience-at-a-game-company</link>
  <description><![CDATA[Normal maps are a common method to increase apparent surface detail in games and other interactive 3D graphics applications. However, when seen at a distance, normal mapped surfaces tend to look too smooth and shiny since the surface detail they provide is smoothed away without any corresponding change to the aggregate surface reflectance. While on sabbatical at Firaxis Games, Dr. Olano developed Linear Efficient Antialiased Normal (LEAN) Mapping, a fast and efficient solution to this problem...]]></description>
  <dc:date>2010-09-10</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/891/Compressive-Geospatial-Analytics">
  <title><![CDATA[Compressive Geospatial Analytics]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/891/Compressive-Geospatial-Analytics</link>
  <description><![CDATA[Compressive sensing is a randomized data acquisition method that linearly samples sparse or compressible signals at a rate much below the Nyquist-Shannon sampling theorem, and outperforms traditional signal processing techniques through performing both sensing and size reduction tasks simultaneously. Edge-computing is a decentralization approach that provides several properties (specifically reducing the need for moving a large volume of data) via pushing the computation towards the edge of t...]]></description>
  <dc:date>2019-12-09</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/845/Quantum-Annealing-Based-Binary-Compressive-Sensing-with-Matrix-Uncertainty">
  <title><![CDATA[Quantum Annealing Based Binary Compressive Sensing  with Matrix Uncertainty]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/845/Quantum-Annealing-Based-Binary-Compressive-Sensing-with-Matrix-Uncertainty</link>
  <description><![CDATA[Compressive sensing is a novel approach that linearly samples sparse or compressible signals at a rate much below the Nyquist-Shannon sampling rate and outperforms traditional signal processing techniques in acquiring and reconstructing such signals. Compressive sensing with matrix uncertainty is an extension of the standard compressive sensing problem that appears in various applications, including but not limited to cognitive radio sensing, calibration of the antenna, and deconvolution. The...]]></description>
  <dc:date>2019-01-01</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/791/Fault-tolerant-variable-block-carry-skip-logic-vbcsl-using-parity-preserving-reversible-gates">
  <title><![CDATA[Fault tolerant variable block carry skip logic (vbcsl) using parity preserving reversible gates]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/791/Fault-tolerant-variable-block-carry-skip-logic-vbcsl-using-parity-preserving-reversible-gates</link>
  <description><![CDATA[Reversible logic design has become one of the promising research directions in low power dissipating circuit design in the past few years and has found its application in low power CMOS design, digital signal processing and nanotechnology. This paper presents the efficient design approaches of fault tolerant carry skip adders (FTCSAs) and compares those designs with the existing ones. Variable block carry skip logic (VBCSL) using the fault tolerant full adders (FTFAs) has also been developed....]]></description>
  <dc:date>2010-09-20</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/795/Low-cost-quantum-realization-of-reversible-multiplier-circuit">
  <title><![CDATA[Low cost quantum realization of reversible multiplier circuit]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/795/Low-cost-quantum-realization-of-reversible-multiplier-circuit</link>
  <description><![CDATA[Irreversible logic circuits dissipate heat for every bit of information that is lost. Information is lost when the input vector can not be uniquely recovered from the output vector. Theoretically reversible logic dissipates zero power since the input vector of reversible circuit can be uniquely recovered from the output vector. Reversible computation has applications in digital signal processing, low power CMOS design, DNA computing and quantum computing. This study presents an overview of th...]]></description>
  <dc:date>2009-11-30</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/793/Fault-tolerant-reversible-logic-synthesis-Carry-look-ahead-and-carry-skip-adders">
  <title><![CDATA[Fault tolerant reversible logic synthesis: Carry look-ahead and carry-skip adders]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/793/Fault-tolerant-reversible-logic-synthesis-Carry-look-ahead-and-carry-skip-adders</link>
  <description><![CDATA[Irreversible logic circuits dissipate heat for every bit of information that is lost. Information is lost when the input vector cannot be recovered from its corresponding output vector. Reversible logic circuit naturally takes care of heating because it implements only the functions that have one-to-one mapping between its input and output vectors. Therefore reversible logic design becomes one of the promising research directions in low power dissipating circuit design in the past few years a...]]></description>
  <dc:date>2009-07-15</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/794/Synthesis-of-fault-tolerant-reversible-logic-circuits">
  <title><![CDATA[Synthesis of fault tolerant reversible logic circuits]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/794/Synthesis-of-fault-tolerant-reversible-logic-circuits</link>
  <description><![CDATA[Reversible logic is emerging as an important research area having its application in diverse fields such as low power CMOS design, digital signal processing, cryptography, quantum computing and optical information processing. This paper presents a new 4*4 universal reversible logic gate, IG. It is a parity preserving reversible logic gate, that is, the parity of the inputs matches the parity of the outputs. The proposed parity preserving reversible gate can be used to synthesize any arbitrary...]]></description>
  <dc:date>2009-04-28</dc:date>
 </item>
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