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首页> 外文期刊>International Journal of Applied Mathematics and Computer Science >AN ADAPTIVE MULTI-SPLINE REFINEMENT ALGORITHM IN SIMULATION BASED SAILBOAT TRAJECTORY OPTIMIZATION USING ONBOARD MULTI-CORE COMPUTER SYSTEMS
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AN ADAPTIVE MULTI-SPLINE REFINEMENT ALGORITHM IN SIMULATION BASED SAILBOAT TRAJECTORY OPTIMIZATION USING ONBOARD MULTI-CORE COMPUTER SYSTEMS

机译:基于板载多核计算机系统的基于仿真的风船轨迹优化的自适应多样条细化算法

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摘要

A new dynamic programming based parallel algorithm adapted to on-board heterogeneous computers for simulation based trajectory optimization is studied in the context of "high-performance sailing". The algorithm uses a new discrete space of continuously differentiable functions called the multi-splines as its search space representation. A basic version of the algorithm is presented in detail (pseudo-code, time and space complexity, search space auto-adaptation properties). Possible extensions of the basic algorithm are also described. The presented experimental results show that contemporary heterogeneous on-board computers can be effectively used for solving simulation based trajectory optimization problems. These computers can be considered micro high performance computing (HPC) platforms-they offer high performance while remaining energy and cost efficient. The simulation based approach can potentially give highly accurate results since the mathematical model that the simulator is built upon may be as complex as required. The approach described is applicable to many trajectory optimization problems due to its black-box represented performance measure and use of OpenCL.
机译:在“高性能航行”的背景下,研究了一种新的基于动态编程的并行算法,该算法适用于机载异构计算机,用于基于轨迹的仿真优化。该算法使用具有连续可微函数的新离散空间(称为多样条)作为其搜索空间表示。详细介绍了该算法的基本版本(伪代码,时间和空间复杂度,搜索空间自动适应属性)。还描述了基本算法的可能扩展。给出的实验结果表明,当代的异构机载计算机可以有效地用于解决基于仿真的轨迹优化问题。这些计算机可以被视为微型高性能计算(HPC)平台,它们在提供高性能的同时又保持了能源和成本效益。基于仿真的方法可能潜在地提供高度准确的结果,因为基于仿真器的数学模型可能会像所需的那样复杂。所描述的方法由于其黑盒表示的性能度量和OpenCL的使用而适用于许多轨迹优化问题。

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