Air combat between fighter missiles and aircraft can be categorised as a pursuit-evasion problem. One aircraft acts as a pursuer and the other as an evader. Generally, the pursuer will try to capture the evader as quickly as possible and the evader tries to evade capture for as long as possible. For an experienced human pilot, it is trivial to discuss this methodology, but to simulate it, the mathematics involved is very complex and difficult to implement in a computer environment. Classical methods, though very accurate in their analysis, are not suited to solve a complex 6DOF pursuit-evasion problem and they have limitations in representing real-world problems such as discontinuities, discrete, stochastic, chaotic, temporal information or...
This paper details the application of a Cooperative Coevolution On-Line Evolutionary Algorithm (CCOL...
This thesis presents a modern evolutionary technique for design and optimisation in aeronautics, wi...
Many complex aeronautical design problems can be formulated with efficient multi-objective evolution...
Abstract. The optimisation of air combat manoeuvre using standard evolutionary programming (EP) algo...
The paper discusses the use of parallel evolutionary programming optimisation algorithm to help pilo...
There is a recognised need for an automated trajectory planning to guide manned or unmanned aircraft...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
This paper describes the formulation and application of a design framework that supports the complex...
This paper describes the formulation and application of a design framework that supports the complex...
This thesis presents an integrated framework for online obstacle avoidance of rotary-wing unmanned a...
Many complex aeronautical design problems can be formulated with efficient multi-objective evolution...
This paper details the application of a Cooperative Coevolution On-Line Evolutionary Algorithm (CCOL...
This thesis presents a modern evolutionary technique for design and optimisation in aeronautics, wi...
Many complex aeronautical design problems can be formulated with efficient multi-objective evolution...
Abstract. The optimisation of air combat manoeuvre using standard evolutionary programming (EP) algo...
The paper discusses the use of parallel evolutionary programming optimisation algorithm to help pilo...
There is a recognised need for an automated trajectory planning to guide manned or unmanned aircraft...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
We overview methodologies to optimise an aircraft trajectory in a two-player close air combat scenar...
This paper describes the formulation and application of a design framework that supports the complex...
This paper describes the formulation and application of a design framework that supports the complex...
This thesis presents an integrated framework for online obstacle avoidance of rotary-wing unmanned a...
Many complex aeronautical design problems can be formulated with efficient multi-objective evolution...
This paper details the application of a Cooperative Coevolution On-Line Evolutionary Algorithm (CCOL...
This thesis presents a modern evolutionary technique for design and optimisation in aeronautics, wi...
Many complex aeronautical design problems can be formulated with efficient multi-objective evolution...