<rdf:RDF
 xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#"
 xmlns="http://purl.org/rss/1.0/"
 xmlns:dc="http://purl.org/dc/elements/1.1/"
 xmlns:cc="http://web.resource.org/cc/"
 >
<!--
	This ontology document is licensed under the Creative Commons
	Attribution License. To view a copy of this license, visit
	http://creativecommons.org/licenses/by/2.0/ or send a letter to
	Creative Commons, 559 Nathan Abbott Way, Stanford, California
	94305, USA.
-->
 <channel rdf:about="http://ebiquity.umbc.edu//tags/html/?t=cooperation">
  <cc:license rdf:resource="http://creativecommons.org/licenses/by/2.0/" />
  <title><![CDATA[UMBC ebiquity RSS Tag Search]]></title>
  <link><![CDATA[http://ebiquity.umbc.edu//tags/html/?t=cooperation]]></link>
  <description><![CDATA[UMBC ebiquity RSS Tag Search for cooperation]]></description>
  <items>
    <rdf:Seq>
      <rdf:li resource="http://ebiquity.umbc.edu/event/html/id/124/Organizational-Learning-and-Network-Adaptation-in-Multi-Agent-Systems"/>
      <rdf:li resource="http://ebiquity.umbc.edu/event/html/id/91/Intelligent-Agents-meet-the-Semantic-Web"/>
      <rdf:li resource="http://ebiquity.umbc.edu/event/html/id/43/-Intelligent-Agents-meet-the-Semantic-Web-in-the-Aether"/>
      <rdf:li resource="http://ebiquity.umbc.edu/event/html/id/30/Agent-Based-Services-for-the-Semantic-Web"/>
      <rdf:li resource="http://ebiquity.umbc.edu/getnews/html/id/40/Platys-From-Position-to-Place-in-Next-Generation-Networks"/>
      <rdf:li resource="http://ebiquity.umbc.edu/getnews/html/id/34/SweetRules-v2-1-released"/>
      <rdf:li resource="http://ebiquity.umbc.edu/project/html/id/11/Dynamic-Negotiation-Agents-in-Mobile-Computing"/>
      <rdf:li resource="http://ebiquity.umbc.edu/project/html/id/92/Platys-From-Position-to-Place-in-Next-Generation-Networks"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/807/Secure-Power-Trading-in-Cooperative-Relay-Network-With-Asymmetric-Cournot-Duopoly-Model"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/808/Secrecy-Outage-of-Cooperative-Relay-Network-With-and-Without-Eavesdropper-s-Direct-Link"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/805/Duopoly-Models-for-Power-Trading-in-Secure-Cooperative-Relay-Networks"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/490/Security-Through-Collaboration-and-Trust-in-MANETs"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/424/Security-through-Collaboration-in-MANETs"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/372/RDF123-and-Spotter-Tools-for-generating-OWL-and-RDF-for-biodiversity-data-in-spreadsheets-and-unstructured-text"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/222/Social-Networking-on-the-Semantic-Web"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/274/Rule-based-and-Ontology-based-Policies-Toward-a-Hybrid-Approach-to-Control-Agents-in-Pervasive-Environments"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/215/Agent-Based-Services-for-the-Semantic-Web"/>
      <rdf:li resource="http://ebiquity.umbc.edu/paper/html/id/39/Intelligent-Agents-for-Mobile-and-Embedded-Devices"/>
      <rdf:li resource="http://ebiquity.umbc.edu/research/area/id/9/Semantic-Web"/>
      <rdf:li resource="http://ebiquity.umbc.edu/resource/html/id/114/Intelligent-Agents-meet-the-Semantic-Web"/>
    </rdf:Seq>
  </items>
 </channel>
 <item rdf:about="http://ebiquity.umbc.edu/event/html/id/124/Organizational-Learning-and-Network-Adaptation-in-Multi-Agent-Systems">
  <title><![CDATA[Organizational Learning and Network Adaptation in Multi-Agent Systems]]></title>
  <link>http://ebiquity.umbc.edu/event/html/id/124/Organizational-Learning-and-Network-Adaptation-in-Multi-Agent-Systems</link>
  <description><![CDATA[In both real and artificial societies, successful organizations are
highly dependent upon a structure that fosters effective and efficient
behavior at both the individual and the organizational levels. In
multi-agent systems, groups of agents must coordinate effectively in
order to solve problems, allocate tasks across a distributed
organization, collectively distribute knowledge and information, and
achieve collective goals.  The organizational structure of a
multi-agent system dictat...]]></description>
  <dc:date>2005-11-14</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/event/html/id/91/Intelligent-Agents-meet-the-Semantic-Web">
  <title><![CDATA[Intelligent Agents meet the Semantic Web]]></title>
  <link>http://ebiquity.umbc.edu/event/html/id/91/Intelligent-Agents-meet-the-Semantic-Web</link>
  <description><![CDATA[The concept of an agent is ubiquitous in Computer Science.
During the past decade a "software agents" paradigm has
emerged which views agents as autonomous, cooperating
processes which use expressive communication languages to
exchange information and knowledge and to coordinate their
activities. This has been seen as a way to capitalize on the
opportunities (and solve many of the problems) created by
the Internet and Web.  Yet the technology has not yet made
it out of our laboratorie...]]></description>
  <dc:date>2005-04-05</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/event/html/id/43/-Intelligent-Agents-meet-the-Semantic-Web-in-the-Aether">
  <title><![CDATA["Intelligent Agents meet the Semantic Web in the Aether]]></title>
  <link>http://ebiquity.umbc.edu/event/html/id/43/-Intelligent-Agents-meet-the-Semantic-Web-in-the-Aether</link>
  <description><![CDATA[The concept of an agent is ubiquitous in Computer Science. We employ it to talk about and to model a wide range of things from physical robots, to modules in client-server architectures, to human, to Internet-based information retrieval programs, to intelligent personal assistants. During the past decade a "software agents" paradigm has
emerged which views agents as autonomous, cooperating processes which use rich agent communication languages to exchange information and knowledge and to coo...]]></description>
  <dc:date>2004-07-20</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/event/html/id/30/Agent-Based-Services-for-the-Semantic-Web">
  <title><![CDATA[Agent-Based Services for the Semantic Web]]></title>
  <link>http://ebiquity.umbc.edu/event/html/id/30/Agent-Based-Services-for-the-Semantic-Web</link>
  <description><![CDATA[In the semantic web vision, data and information on the Web are
defined and linked so that they are both human readable and
machine understandable. Machine understandability means that
the data have been explicitly prepared for programs and
software agents to reason about and reuse.  However, most
software agents have not been designed to run in a web
environment: the agents and web components are working in
different models.  For example, most software agent frameworks
and tools do n...]]></description>
  <dc:date>2004-05-06</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/getnews/html/id/40/Platys-From-Position-to-Place-in-Next-Generation-Networks">
  <title><![CDATA[Platys: From Position to Place in Next Generation Networks]]></title>
  <link>http://ebiquity.umbc.edu/getnews/html/id/40/Platys-From-Position-to-Place-in-Next-Generation-Networks</link>
  <description><![CDATA[A UMBC research team led by Anupam Joshi and Tim Finin received an award from
NSF for four-year project that will explore how advances
in mobile technology and networking can support systems that
understand and adapt their behavior to their user's context,
activities and preferences.

Platys is a collaborative research project between
UMBC and groups at North Carolina State (led by Munindar
Singh and Injong
Rhee) and Duke (led by Romit Roy Choudhury)
Universities.  The group will sh...]]></description>
  <dc:date>2009-08-31</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/getnews/html/id/34/SweetRules-v2-1-released">
  <title><![CDATA[SweetRules v2.1 released]]></title>
  <link>http://ebiquity.umbc.edu/getnews/html/id/34/SweetRules-v2-1-released</link>
  <description><![CDATA[First Platform for Semantic Web Rules Now Includes Web Services 
Support and More:  SweetRules V2.1 Released Open Source
 

Contacts: Chitro Neogy (chitro@mit.edu) and Benjamin Grosof (bgrosof@mit.edu)
 
CAMBRIDGE, MA, USA, April 25:  
 
SweetRules, a uniquely powerful integrated set of tools for semantic
web rules and ontologies, is newly enhanced in V2.1 with several
first-of-a-kind capabilities, including support for rule-triggered
WSDL Web Services, RuleML presentation syntax f...]]></description>
  <dc:date>2005-04-25</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/project/html/id/11/Dynamic-Negotiation-Agents-in-Mobile-Computing">
  <title><![CDATA[Dynamic Negotiation Agents in Mobile Computing]]></title>
  <link>http://ebiquity.umbc.edu/project/html/id/11/Dynamic-Negotiation-Agents-in-Mobile-Computing</link>
  <description><![CDATA[A three year project funded by NSF (award number 0070802) directed by PI Anupam Joshi and CO-PIs Tim Finin, and Yelena Yesha and will be carried out 2000-2003 with $170,000 in funding from the NSF
CCR Division of Computer-communication research under program officer Yuan-Chieh Chow.

With the advent of third and fourth generation wireless infrastructure, and the simultaneous emergency of pervasive connectivity for all devices based on bluetooth like systems and ad-hoc networks, a new vista...]]></description>
  <dc:date>2002-10-01</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/project/html/id/92/Platys-From-Position-to-Place-in-Next-Generation-Networks">
  <title><![CDATA[Platys: From Position to Place in Next Generation Networks]]></title>
  <link>http://ebiquity.umbc.edu/project/html/id/92/Platys-From-Position-to-Place-in-Next-Generation-Networks</link>
  <description><![CDATA[Platys is a collaborative research project between
UMBC and groups at North Carolina State (led by Munindar
Singh and Injong
Rhee) and Duke (led by Romit Roy Choudhury)
Universities.  The group will share $1.8M in research funding
from NSF's Network
Science and Engineering program.

Platys will develop a high-level notion of 'context' that
exploits the capabilities of next generation networks to enable
applications that deliver better user experiences. In particular,
it exploits mo...]]></description>
  <dc:date>2009-09-01</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/807/Secure-Power-Trading-in-Cooperative-Relay-Network-With-Asymmetric-Cournot-Duopoly-Model">
  <title><![CDATA[Secure Power Trading in Cooperative Relay Network With Asymmetric Cournot Duopoly Model]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/807/Secure-Power-Trading-in-Cooperative-Relay-Network-With-Asymmetric-Cournot-Duopoly-Model</link>
  <description><![CDATA[Abstract—In this paper, we consider a source, which communicates to destination, with cooperation of a relay node. An eavesdropper is tapping the second hop, when all the links undergo Rayleigh fading. Relay nodes are the market players, who compete to trade their power to source in order to maximize their incentives. We evaluate the secrecy outage probability of a dual-hop decode-and-forward (DF) threshold- based cooperative relay network. Without assuming that all the relays can always pe...]]></description>
  <dc:date>2017-05-31</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/808/Secrecy-Outage-of-Cooperative-Relay-Network-With-and-Without-Eavesdropper-s-Direct-Link">
  <title><![CDATA[Secrecy Outage of Cooperative Relay Network With and Without Eavesdropper's Direct Link]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/808/Secrecy-Outage-of-Cooperative-Relay-Network-With-and-Without-Eavesdropper-s-Direct-Link</link>
  <description><![CDATA[In this paper, a source communicates to the destination with the cooperation of a relay, in the presence of an eavesdropper. All the links undergo Rayleigh fading and perfect decoding at the relays is not considered. The secrecy outage probability expression is evaluated for a decode-and-forward (DF) dual-hop cooperative relay network, both with and without the presence of direct source to eavesdropper transmission link. The performance of the maximal ratio combining (MRC) and selection combi...]]></description>
  <dc:date>2017-03-02</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/805/Duopoly-Models-for-Power-Trading-in-Secure-Cooperative-Relay-Networks">
  <title><![CDATA[Duopoly Models for Power Trading in Secure Cooperative Relay Networks]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/805/Duopoly-Models-for-Power-Trading-in-Secure-Cooperative-Relay-Networks</link>
  <description><![CDATA[In this paper we consider a source, in-need of cooperation of a relay due to limited battery power to communicate with the destination, with an eavesdropper tapping the second hop, when all the links undergo Rayleigh fading. Relay nodes are the market players, who compete to trade their power to source in order to maximize their incentives. Asymptotic analysis of the intercept probability is presented when source-relay and relay-destination average SNRs are the same or different. We evaluate ...]]></description>
  <dc:date>2016-02-29</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/490/Security-Through-Collaboration-and-Trust-in-MANETs">
  <title><![CDATA[Security Through Collaboration and Trust in MANETs]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/490/Security-Through-Collaboration-and-Trust-in-MANETs</link>
  <description><![CDATA[It is well understood that Mobile Ad Hoc Networks (MANETs) are extremely susceptible to a variety of attacks, and traditional security mechanisms do not work well. Many security schemes have been proposed that depend on cooperation amongst the nodes in a MANET for identifying nodes that are exhibiting malicious behaviors such as packet dropping, packet modification, and packet misrouting. We argue that in general, this problem can be viewed as an instance of detecting nodes whose behavior is ...]]></description>
  <dc:date>2012-06-01</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/424/Security-through-Collaboration-in-MANETs">
  <title><![CDATA[Security through Collaboration in MANETs]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/424/Security-through-Collaboration-in-MANETs</link>
  <description><![CDATA[It is well understood that Mobile Ad Hoc Networks (MANETs) are extremely susceptible to a variety of attacks, and traditional security mechanisms do not work well. Many security schemes have been proposed that depend on cooperation amongst the nodes in a
MANET for identifying nodes that are exhibiting malicious behavior such as packet dropping, packet modification, and packet misrouting. We argue that in general, this problem can be viewed as an instance of detecting nodes whose behavior is ...]]></description>
  <dc:date>2008-11-14</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/372/RDF123-and-Spotter-Tools-for-generating-OWL-and-RDF-for-biodiversity-data-in-spreadsheets-and-unstructured-text">
  <title><![CDATA[RDF123 and Spotter: Tools for generating OWL and RDF for biodiversity data in spreadsheets and unstructured text]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/372/RDF123-and-Spotter-Tools-for-generating-OWL-and-RDF-for-biodiversity-data-in-spreadsheets-and-unstructured-text</link>
  <description><![CDATA[OWL (the Web Ontology Language) and the related RDF (Resource Description Framework) are XML-based languages designed to represent the semantics of data. These languages enable systems to go beyond simple controlled vocabularies and specify the contexts and logical relationships among terms. Formal ontologies use classes (e.g., Species A) and properties (e.g., is a member of, or eats, or has body mass) to represent concepts and relationships as assertions. For example, two assertions might be...]]></description>
  <dc:date>2007-10-01</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/222/Social-Networking-on-the-Semantic-Web">
  <title><![CDATA[Social Networking on the Semantic Web]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/222/Social-Networking-on-the-Semantic-Web</link>
  <description><![CDATA[The Semantic Web promised to enable a new generation of intelligent applications by providing programs and software agents with rich and effective ways to share information and knowledge. The Semantic Web allows people and groups to define sharable ontologies - collections of classes, properties, and objects - with well-defined and unambiguous meaning. These ontologies permit computer programs to read, publish, and exchange information and knowledge, enhancing interoperability, cooperation, a...]]></description>
  <dc:date>2005-12-31</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/274/Rule-based-and-Ontology-based-Policies-Toward-a-Hybrid-Approach-to-Control-Agents-in-Pervasive-Environments">
  <title><![CDATA[Rule-based and Ontology-based Policies: Toward a Hybrid Approach to Control Agents in Pervasive Environments]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/274/Rule-based-and-Ontology-based-Policies-Toward-a-Hybrid-Approach-to-Control-Agents-in-Pervasive-Environments</link>
  <description><![CDATA[Policies are being increasingly used for controlling the behavior of
complex multi-agent systems. The use of policies allows administrators to regulate
agent behavior without changing source code or requiring the consent or
cooperation of the agents being governed. However, policy-based control can
sometimes encounter difficulties when applied to agents that act in pervasive
environments characterized by frequent and unpredictable changes. In such cases,
we cannot always specify policie...]]></description>
  <dc:date>2005-11-07</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/215/Agent-Based-Services-for-the-Semantic-Web">
  <title><![CDATA[Agent-Based Services for the Semantic Web]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/215/Agent-Based-Services-for-the-Semantic-Web</link>
  <description><![CDATA[The semantic web suggests having data and information on the web defined
and linked in a way that it is both human readable and machine
understandable. Machine understandability means that data has been
explicitly prepared for programs and softrware agents to reason about and
reuse. However, most current software agents have not been designed to run
in a web environment: the software agents and web components are working
in different models.  For example, most software agent frameworks ...]]></description>
  <dc:date>2004-08-01</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/paper/html/id/39/Intelligent-Agents-for-Mobile-and-Embedded-Devices">
  <title><![CDATA[Intelligent Agents for Mobile and Embedded Devices]]></title>
  <link>http://ebiquity.umbc.edu/paper/html/id/39/Intelligent-Agents-for-Mobile-and-Embedded-Devices</link>
  <description><![CDATA[The pervasive computing environments of the near future will involve the interactions, coordination and cooperation of numerous, casually accessible, and often invisible computing devices. These devices, whether carried on our person or embedded in our homes, business and classrooms, will connect via wireless and wired links to one another and to the global networking infrastructure. The result will be a networking milieu with a new level of openness. The localized and dynamic nature of their...]]></description>
  <dc:date>2002-12-01</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/research/area/id/9/Semantic-Web">
  <title><![CDATA[Semantic Web]]></title>
  <link>http://ebiquity.umbc.edu/research/area/id/9/Semantic-Web</link>
  <description><![CDATA[The Semantic Web is the representation of data on the World Wide Web. The W3C is currently developing standards for the semantic web built on a foundation of XML, RDF and OWL.


    "The Semantic Web is an extension of the current web in which information is given well-defined meaning, better enabling computers and people to work in cooperation." -- Tim Berners-Lee, James Hendler, Ora Lassila, The Semantic Web, Scientific American, May 2001.]]></description>
  <dc:date>2026-09-06</dc:date>
 </item>
 <item rdf:about="http://ebiquity.umbc.edu/resource/html/id/114/Intelligent-Agents-meet-the-Semantic-Web">
  <title><![CDATA[Intelligent Agents meet the Semantic Web]]></title>
  <link>http://ebiquity.umbc.edu/resource/html/id/114/Intelligent-Agents-meet-the-Semantic-Web</link>
  <description><![CDATA[The concept of an agent is ubiquitous in Computer Science. During the past decade, a "software agents" paradigm has emerged, which views agents as autonomous, cooperating processes that use expressive communication languages to exchange information and knowledge and to coordinate their activities. This has been seen as a way to capitalize on opportunities (and solve many problems) created by the Internet and the Web. Yet the technology has not yet left our laboratories. Was it just another AI...]]></description>
  <dc:date>2005-04-05</dc:date>
 </item>
</rdf:RDF>
