TECHNICAL OVERVIEW in Java

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TECHNICAL OVERVIEW
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Observe User in the space-time Environment
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Act for User in the space-time Environment 6 Autonomous Collaboration
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Observe Radio in the RF Environment
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4 Change band/mode to stay connected/ to reduce cost to user/ user versus network goal 5 Change data rate, filtering, source, power to optimize type & quality of information (QoI) 6 Manage power, bandwidth, data rate, direction for a community of CR s (CWN, FedNet)
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FIGURE 2-1 iCRs enable user-centric, RF-aware, context-sensitive information access.
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shows iCRs that observe users in their natural environments to enable situation-dependent information access, employing radio control toward useroptimized ends (not necessarily network-optimized ends), steps that are well beyond the network-optimized WWRF vision of I [140]. Unlike prior radio technology, iCRs are computationally aware of the <Self/> in the radio environment of multiple networks, autonomously collaborating to enhance the wireless experience of all users in CWNs. The iCR <Self/> must discover its user, networks, and goals. 2.2.3 From Provider-Driven to Perceived-User Responsive
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Items 4, 5, and 6 in Figure 2-1 illustrate the evolution of wireless devices from nonperceptive to <Self/>-, <RF/>-, and <User/>-perceptive. A radio following FCC spectrum-use rules can identify new opportunities for ad hoc networking in <RF> <TV-bands/> </RF>1 implemented as yet another preprogrammed MAC layer. This is an aggressive regulatory step, enabling user-oriented <TVband> behavior but not needing the radio to perceive <Self/> or <User/> per se. Similarly, in the GSM DECT badges at KTH the initial personalities typically stayed in GSM mode inside buildings because GSM penetrates buildings, generating revenue for Telia. With SDR technology, KTH programmed those badges to regularly check the DECT RSSI, switching to DECT whenever
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1 <RF> <TV-bands/> </RF> encapsulates <TV-band/> within <RF/> in any subordinate relationship not just class subclass or is-a but others such as exemplar, partial property inheritance, and space time ontology.
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SENSING AND PERCEPTION: WHAT AND WHOM TO PERCEIVE
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available, a pro-KTH behavior. This hard-coded behavior implemented the value system of ow 4 of Figure 2-1, needing no <Self/> or <User/> data structures, only the KTH-centric AAR behavior. 2.2.4 Self Perception
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Additional wireless badge exibility could be achieved via a <Self/>, a software object in each badge. Self-awareness data structures would include objects with relationships to the <Self/>, like <Telia/>, <KTH/>, and the <User/>, each noted in the format of a closed XML tag <. . ./> indicating that the name of the data structure de nes the ontological primitive (Expression 2-1). Expression 2-1 XML Data Structure for a Badge s <Self/>
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<Self> <Name >Badge-001 </Name > <Owner> KTH </Owner> <User> Chip </User> <Optimization> <Lowest-cost/> </ Optimization> </Self> This badge s <Self/> behavior is de ned not by the preprogrammed proTelia nor by the reprogrammed pro-KTH behavior, but by the more general <Optimization/> objective best supporting the <User/> <Optimization/> value system. Normally, the <User/> might assert <Lowest-cost/>, resulting in the pro-KTH behavior. Alternatively, the <User/> might <Optimize/> for <Minimum-handover/> during an experiment that handover would disrupt, and for which the cost of GSM is warranted. Such situation-dependent objectives are realized by situation-dependent choice among the xed pro-Telia and pro-KTH behaviors. Thus, the association of behaviors with relationships among <Self/> and <User/> in a <Scene/> enables greater exibility than either preprogrammed AAR. The AACR with <Self/> and <User/> data structures can respond to discovered objectives like <Lowest-cost/>. 2.2.4.1 Degrees of Self-Awareness: Aware, Adaptive, Self-Conscious An AACR containing a <Self/> data structure could be self-aware. Built-in test (BIT) may aggregate self-descriptive data in a way that is tantamount to a <Self/>. The SDR Forum s software communications architecture (SCA), for example, describes the self in terms of resources components assembled by a factory entity [58, 70, 79]. In 2005, the Forum did not call SCA a <Self/> but the self-describing XML data structures were tantamount to <Self/>. An AACR that modi es its <Self/> data structure depending on its own perception of world states and events is self-adaptive. BIT that overcomes hardware
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