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Active Guidance for a Finless Rocket Using Neuroevolution

机译:使用神经进化的无翼火箭的主动制导

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摘要

Finless rockets are more efficient than finned designs, but are too unstable to fly unassisted. These rockets require an active guidance system to control their orientation during flight and maintain stability. Because rocket dynamics are highly non-linear, developing such a guidance system can be prohibitively costly, especially for relatively small-scale rockets such as sounding rockets. In this paper, we propose a method for evolving a neural network guidance system using the Enforced SubPopulations (ESP) algorithm. Based on a detailed simulation model, a controller is evolved for a flnless version of the Interorbital Systems RSX-2 sounding rocket. The resulting performance is compared to that of an unguided standard full-finned version. Our results show that the evolved active guidance controller can greatly increase the final altitude of the rocket, and that ESP can be an effective method for solving real-world, non-linear control tasks.
机译:无鳍火箭比鳍翅设计的效率更高,但不稳定,无法无助飞行。这些火箭需要一个主动的制导系统来控制飞行过程中的方向并保持稳定性。由于火箭动力学是高度非线性的,因此开发这种制导系统的成本可能过高,尤其是对于诸如探空火箭之类的相对较小的火箭而言。在本文中,我们提出了一种使用强制子种群(ESP)算法演化神经网络制导系统的方法。在详细的仿真模型的基础上,为无轨版本的RSX-2探空火箭开发了一种控制器。将所得的性能与未指导的标准全翅式版本的性能进行比较。我们的结果表明,改进的主动制导控制器可以大大提高火箭的最终高度,而ESP可以解决现实世界中的非线性控制任务。

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