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    Concurrent Specification and Selection of Heterogeneous Sensors Using Goal Programming

    Source: Journal of Computing and Information Science in Engineering:;2026:;volume( 026 ):;issue:001
    Author:
    Kulkarni, Amol
    ,
    Chaisiriroj, Pongchalat
    ,
    Chitra, Vignesh
    ,
    Prabhu, Vittaldas
    ,
    Terpenny, Janis
    DOI: 10.1115/1.4069826
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Abstract. Recent advances in wireless networking technologies, the reliable application of fault diagnostic and prognostic techniques, and rapid advances in machine learning algorithms have led to widespread use and benefits for Internet-of-Things applications. These advances have also made it possible for devices, previously used for monitoring at enterprise levels, to be applied to monitoring at the individual equipment level. Devices such as networked sensors and radio frequency identification (RFID) tags are increasingly used to detect, track, and monitor equipment in a variety of applications. While the benefits are quite promising, there are significant challenges in the adoption and deployment of such networked sensors in terms of design, operation, and economic justification. Selecting sensors with appropriate specifications is imperative for capturing high-quality information. This article presents a goal programming approach that utilizes sensor manufacturers' datasheets to specify and select a heterogeneous set of sensors. The usefulness of the proposed goal programming approach is demonstrated through its ability to concurrently handle the specification and selection of heterogeneous sensors in intricate systems. This differs from prior approaches, which treat sensor selection and specification disjointly during system design. The main contribution of this study is the development of a mathematical model to support flexible design needs and distinguishes itself from previous approaches in the field, and the use of dynamic specification bounds allowing users to explore design trade-offs and adjust system targets as needed. As a result, the proposed goal programming approach enables a more thorough and integrated design strategy for selecting sensors for intricate equipment.
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      Concurrent Specification and Selection of Heterogeneous Sensors Using Goal Programming

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    contributor authorKulkarni, Amol
    contributor authorChaisiriroj, Pongchalat
    contributor authorChitra, Vignesh
    contributor authorPrabhu, Vittaldas
    contributor authorTerpenny, Janis
    date accessioned2026-08-23T07:53:35Z
    date available2026-08-23T07:53:35Z
    date copyright2026/01/01
    date issued2026
    identifier issn1530-9827
    identifier otherjcise-25-1104.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4315760
    description abstractAbstract. Recent advances in wireless networking technologies, the reliable application of fault diagnostic and prognostic techniques, and rapid advances in machine learning algorithms have led to widespread use and benefits for Internet-of-Things applications. These advances have also made it possible for devices, previously used for monitoring at enterprise levels, to be applied to monitoring at the individual equipment level. Devices such as networked sensors and radio frequency identification (RFID) tags are increasingly used to detect, track, and monitor equipment in a variety of applications. While the benefits are quite promising, there are significant challenges in the adoption and deployment of such networked sensors in terms of design, operation, and economic justification. Selecting sensors with appropriate specifications is imperative for capturing high-quality information. This article presents a goal programming approach that utilizes sensor manufacturers' datasheets to specify and select a heterogeneous set of sensors. The usefulness of the proposed goal programming approach is demonstrated through its ability to concurrently handle the specification and selection of heterogeneous sensors in intricate systems. This differs from prior approaches, which treat sensor selection and specification disjointly during system design. The main contribution of this study is the development of a mathematical model to support flexible design needs and distinguishes itself from previous approaches in the field, and the use of dynamic specification bounds allowing users to explore design trade-offs and adjust system targets as needed. As a result, the proposed goal programming approach enables a more thorough and integrated design strategy for selecting sensors for intricate equipment.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleConcurrent Specification and Selection of Heterogeneous Sensors Using Goal Programming
    typeJournal Paper
    journal volume26
    journal issue1
    journal titleJournal of Computing and Information Science in Engineering
    identifier doi10.1115/1.4069826
    treeJournal of Computing and Information Science in Engineering:;2026:;volume( 026 ):;issue:001
    contenttypeFulltext
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