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In addition to these, single mode guidance and bending loss characteristics of the proposed structure has been analyzed rigorously.
The feasibility of the new guidance law is exemplified through computer simulations and the guidance performance is compared with augmented proportional navigation guidance law, sliding mode guidance law and nonsingular terminal sliding mode guidance law.
In this paper, we develop a strictly convergent nonsingular terminal sliding mode guidance law for missiles with impact angle constraints.
Finally, the superiority of the proposed method is substantiated by simulation results in comparison with terminal sliding mode guidance law.
The performance of the proposed guidance law in terms of interception time and control effort is compared with the sliding mode guidance law by means of numerical simulations.
Secondly, a 3D terminal sliding mode guidance law with gradually increasing robustness is proposed for EKV, and the finite time stability of closed system is strictly proven.
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Another novel design that allows simultaneous single-polarization single-mode guidance in two wavelength windows centered at 1.55 and 1.31 μm is also proposed.
In one example, the leakage-free single-mode guidance is found for a large frequency interval covering 60% of the photonic bandgap.
In particular, numerical simulations demonstrate the possibility of single-mode guidance with the mode area extending to 11,900 μm2 at the wavelength of 1.55 μm in the proposed fiber.
The formalism involves application of least square fitting method in order to formulate a linear relationship of the ratio of first and zero order modified Bessel functions with reciprocal of cladding decay parameter over a wide and practical range of its values, appropriate for single-mode guidance in such fibers.
This study laid a foundation for selecting the release modes of guidance information in both theory and practice.
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