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Kirjailija

Hyo-Sang Shin

Kirjat ja teokset yhdessä paikassa: 2 kirjaa, julkaisuja vuosilta 2020–2021, suosituimpiin kuuluu Optimal Guidance and Its Applications in Missiles and UAVs. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

2 kirjaa

Kirjojen julkaisuvuodet: 2020–2021.

Optimal Guidance and Its Applications in Missiles and UAVs

Optimal Guidance and Its Applications in Missiles and UAVs

Shaoming He; Chang-Hun Lee; Hyo-Sang Shin; Antonios Tsourdos

Springer Nature Switzerland AG
2021
nidottu
This book presents a comprehensive overview of the recent advances in the domain of optimal guidance, exploring the characteristics of various optimal guidance algorithms and their pros and cons. Optimal guidance is based on the concept of trajectory optimization, which minimizes the meaningful performance index while satisfying certain terminal constraints, and by properly designing the cost function the guidance command can serve as a desired pattern for a variety of mission objectives. The book allows readers to gain a deeper understanding of how optimal guidance law can be utilized to achieve different mission objectives for missiles and UAVs, and also explores the physical meaning and working principle of different new optimal guidance laws. In practice, this information is important in ensuring confidence in the performance and reliability of the guidance law when implementing it in a real-world system, especially in aerospace engineering where reliability is the first priority.
Optimal Guidance and Its Applications in Missiles and UAVs

Optimal Guidance and Its Applications in Missiles and UAVs

Shaoming He; Chang-Hun Lee; Hyo-Sang Shin; Antonios Tsourdos

Springer Nature Switzerland AG
2020
sidottu
This book presents a comprehensive overview of the recent advances in the domain of optimal guidance, exploring the characteristics of various optimal guidance algorithms and their pros and cons. Optimal guidance is based on the concept of trajectory optimization, which minimizes the meaningful performance index while satisfying certain terminal constraints, and by properly designing the cost function the guidance command can serve as a desired pattern for a variety of mission objectives. The book allows readers to gain a deeper understanding of how optimal guidance law can be utilized to achieve different mission objectives for missiles and UAVs, and also explores the physical meaning and working principle of different new optimal guidance laws. In practice, this information is important in ensuring confidence in the performance and reliability of the guidance law when implementing it in a real-world system, especially in aerospace engineering where reliability is the first priority.