A practical guide to designing, testing, and operating wearable propulsion systems, this book brings together the core engineering disciplines behind jet suits and other personal flight platforms. It presents a structured path from mission definition and human factors to propulsion hardware, control software, power systems, safety validation, and flight testing.
The book is organized like an engineering handbook, making it useful for readers who need both conceptual clarity and implementation direction. It connects pilot comfort and control workload with the technical realities of propulsion, software, structure, and system safety. The result is a unified view of how a wearable flight platform can be designed to be controllable, maintainable, and testable.
Ideal for engineers, advanced hobbyists, researchers, and technical teams working on personal flight systems, jet suits, and compact human carrying propulsion platforms.
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PAP. Zustand: New. New Book. Shipped from UK. Established seller since 2000. Bestandsnummer des Verkäufers L2-9798180834355
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Paperback. Zustand: new. Paperback. A practical guide to designing, testing, and operating wearable propulsion systems, this book brings together the core engineering disciplines behind jet suits and other personal flight platforms. It presents a structured path from mission definition and human factors to propulsion hardware, control software, power systems, safety validation, and flight testing.What the book coversSystem architecture for personal flight, including requirements, boundaries, operating modes, and traceability.Human factors and ergonomics, with attention to workload, posture, training, and error reduction.Propulsion and power delivery fundamentals, from thrust generation to thermal and reliability concerns.Structural design for wearable frames, including load paths, materials, fatigue, and quick release hardware.Sensor selection, signal conditioning, and sensor placement for accurate flight control.Control system design for stability, maneuvering, saturation handling, and control allocation.Human in the loop interfaces, assist modes, and guidance logic for takeoff, hover, and landing.Real time flight software, mode management, logging, watchdogs, and verification methods.Safety engineering, fault detection, fail safe behavior, emergency procedures, and validation planning.Power systems, thermal management, protection, and energy budgeting for wearable propulsion.Advanced flight technologies such as thrust vectoring, sensor fusion, disturbance compensation, and efficiency metrics.Integration testing and operational validation, including ground tests, HIL workflows, flight cards, and maintenance practices.Why it stands outThe book is organized like an engineering handbook, making it useful for readers who need both conceptual clarity and implementation direction. It connects pilot comfort and control workload with the technical realities of propulsion, software, structure, and system safety. The result is a unified view of how a wearable flight platform can be designed to be controllable, maintainable, and testable.Ideal for engineers, advanced hobbyists, researchers, and technical teams working on personal flight systems, jet suits, and compact human carrying propulsion platforms. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Bestandsnummer des Verkäufers 9798180834355
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Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Taschenbuch. Zustand: Neu. Neuware - A practical guide to designing, testing, and operating wearable propulsion systems, this book brings together the core engineering disciplines behind jet suits and other personal flight platforms. It presents a structured path from mission definition and human factors to propulsion hardware, control software, power systems, safety validation, and flight testing.What the book covers- System architecture for personal flight, including requirements, boundaries, operating modes, and traceability.- Human factors and ergonomics, with attention to workload, posture, training, and error reduction.- Propulsion and power delivery fundamentals, from thrust generation to thermal and reliability concerns.- Structural design for wearable frames, including load paths, materials, fatigue, and quick release hardware.- Sensor selection, signal conditioning, and sensor placement for accurate flight control.- Control system design for stability, maneuvering, saturation handling, and control allocation.- Human in the loop interfaces, assist modes, and guidance logic for takeoff, hover, and landing.- Real time flight software, mode management, logging, watchdogs, and verification methods.- Safety engineering, fault detection, fail safe behavior, emergency procedures, and validation planning.- Power systems, thermal management, protection, and energy budgeting for wearable propulsion.- Advanced flight technologies such as thrust vectoring, sensor fusion, disturbance compensation, and efficiency metrics.- Integration testing and operational validation, including ground tests, HIL workflows, flight cards, and maintenance practices.Why it stands outThe book is organized like an engineering handbook, making it useful for readers who need both conceptual clarity and implementation direction. It connects pilot comfort and control workload with the technical realities of propulsion, software, structure, and system safety. The result is a unified view of how a wearable flight platform can be designed to be controllable, maintainable, and testable.Ideal for engineers, advanced hobbyists, researchers, and technical teams working on personal flight systems, jet suits, and compact human carrying propulsion platforms. Bestandsnummer des Verkäufers 9798180834355
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