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020 ▼a 9781032678146 ▼q electronic book
020 ▼a 1032678143 ▼q electronic book
020 ▼a 9781003837633 ▼q electronic book
020 ▼a 1003837638 ▼q electronic book
020 ▼a 9781003837596 ▼q electronic book
020 ▼a 100383759X ▼q electronic book
020 ▼z 9781032678153 ▼q paperback
020 ▼z 9781032678139 ▼q hardcover
0247 ▼a 10.1201/9781032678146 ▼2 doi
037 ▼a 9781032678146 ▼b Taylor & Francis
040 ▼a EBZ ▼b eng ▼c EBZ ▼d 248032
042 ▼a pcc
049 ▼a MAIN
05004 ▼a TL685.35 ▼b .Y85 2024
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08200 ▼a 620/.00452 ▼2 23/eng/20240228 ▼1 https://id.oclc.org/worldcat/ddc/E3dktxf6tPWqbTc4PMdXdHpdBQ
1001 ▼a Yu, Ziquan, ▼d 1989-, ▼e author.
24510 ▼a Refined safety control of unmanned flight vehicles via fractional-order calculus / ▼c Ziquan Yu, Youmin Zhang, Bin Jiang and Chun-Yi Su.
250 ▼a First edition.
260 ▼a Boca Raton, FL : ▼b CRC Press, ▼c 2024.
300 ▼a 1 online resource (xxiii, 224 pages) : ▼b illustrations (some color)
336 ▼a text ▼b txt ▼2 rdacontent
337 ▼a computer ▼b c ▼2 rdamedia
338 ▼a online resource ▼b cr ▼2 rdacarrier
3410 ▼a textual ▼2 sapdv ▼3 EBSCOhost
504 ▼a Includes bibliographical references and index.
5050 ▼a Refined finite-time FO FTC of UAV against input saturation and actuator faults -- Refined FO adaptive safety control of UAVs against actuator-sensor faults -- Composite refined FO safety control of UAVs against actuator faults and wind effects -- Refined FO adaptive safety control of UAVs against actuator faults and wind effects -- FO PID-based refined adaptive safety control of UAVs -- Refined distributed adaptive fo safety control of multiple UAVs -- Refined distributed FO adaptive safety control of two-layer UAs -- Conclusions and future research directions.
520 ▼a "The monograph explores the safety of unmanned flight vehicles via the corresponding fault-tolerant control design methods. The authors analyse the safety control issues of unmanned flight vehicles, which include finite-time recovery against faults, concurrence of actuator faults and sensor faults, concurrence of actuator faults and wind effects, and faults encountered by a portion of unmanned flight vehicles in a distributed communication network. In addition, the commonly used simple but effective proportional-integral-derivative structure is also incorporated into the safety control design for unmanned flight vehicles. By using the fractional-order calculus, the developed safety control results are able to ensure flight safety and achieve the refined performance adjustments against faults and wind effects. The book will be of interest to 3rd/4th year undergraduate students, postgraduate and graduate students, researchers, academic staff, engineers of aircraft and unmanned flight vehicles"-- ▼c Provided by publisher.
532 0 ▼3 EBSCOhost ▼a "EBSCO evaluates our products based on the Web Content Accessibility Guidelines (WCAG) and the related Section 508 and EN 301 549 regulations in the US and EU. Most EBSCO products are substantially conformant with WCAG 2.2 level AA." Source: https://connect.ebsco.com/s/article/EBSCO-VPATs?language=en_US. Last accessed April 22, 2025.
588 ▼a Description based on online resource; title from digital title page (viewed on May 17, 2024).
590 ▼a OCLC control number change
650 0 ▼a Drone aircraft ▼x Control systems ▼x Mathematical models.
650 0 ▼a Fault tolerance (Engineering)
650 0 ▼a Fractional calculus.
650 7 ▼a TECHNOLOGY / Aeronautics & Astronautics ▼2 bisacsh
650 7 ▼a TECHNOLOGY / Automation ▼2 bisacsh
7001 ▼a Zhang, Youmin, ▼c (Aerospace engineer), ▼e author.
7001 ▼a Jiang, Bin, ▼d 1966-, ▼e author.
7001 ▼a Su, Chun-Yi, ▼d 1962-, ▼e author.
77608 ▼i Print version: ▼a Yu, Ziquan, 1989- ▼t Refined safety control of unmanned flight vehicles via fractional-order calculus ▼d Boca Raton : CRC Press, 2024 ▼z 9781032678139 ▼w (DLC) 2023037868
85640 ▼3 EBSCOhost ▼u https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=3755143
938 ▼a EBSCOhost ▼b EBSC ▼n 3755143
990 ▼a 관리자