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The book focuses on the orbital dynamics and mission trajectory
(transfer or target trajectory) design of low-energy flight in the
context of modern astrodynamics. It investigates various topics
that either offer new methods for solving classical problems or
address emerging problems that have yet to be studied, including
low-thrust transfer trajectory design using the virtual gravity
field method; transfer in the three-body system using invariant
manifolds; formation flying under space-borne artificial magnetic
fields; and the orbital dynamics of highly irregular asteroids. It
also features an extensive study of the orbital dynamics in the
vicinity of contact binary asteroids, including the 1:1
ground-track resonance, the equilibrium points and their stability,
and the third-order analytical solution of orbital motion in the
vicinity of the non-collinear equilibrium point. Given its breadth
of coverage, the book offers a valuable reference guide for all
engineers and researchers interested in the potential applications
of low-energy space missions.
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