首页> 外文会议>International Workshop on Engineering Self-Organising Systems(ESOA 2005); 20050725; Utrecht(NL) >Development of Self-organising Emergent Applications with Simulation-Based Numerical Analysis
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Development of Self-organising Emergent Applications with Simulation-Based Numerical Analysis

机译:基于仿真的数值分析开发自组织紧急应用

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摘要

The goal of engineering self-organising emergent systems is to acquire a macroscopic system behaviour solely from autonomous local activity and interaction. Due to the non-deterministic nature of such systems, it is hard to guarantee that the required macroscopic behaviour is achieved and maintained. Before even considering a self-organising emergent system in an industrial context, e.g. for Automated Guided Vehicle (AGV) transportation systems, such guarantees are needed. An empirical analysis approach is proposed that combines realistic agent-based simulations with existing scientific numerical algorithms for analysing the macroscopic behaviour. The numerical algorithm itself obtains the analysis results on the fly by steering and accelerating the simulation process according to the algorithm's goal. The approach is feasible, compared to formal proofs, and leads to more reliable and valuable results, compared to mere observation of simulation results. Also, the approach allows to systematically analyse the macroscopic behaviour to acquire macroscopic guarantees and feedback that can be used by an engineering process to iteratively shape a self-organising emergent solution.
机译:工程自组织紧急系统的目标是仅从自治的本地活动和交互中获得宏观的系统行为。由于此类系统的不确定性,因此很难保证实现并维持所需的宏观行为。甚至在工业环境中考虑自组织紧急系统之前,例如对于自动导引车(AGV)运输系统,需要这样的保证。提出了一种经验分析方法,该方法将基于实际代理的模拟与现有的科学数值算法相结合,用于分析宏观行为。数值算法本身可以根据算法的目标,通过操纵和加速仿真过程来即时获得分析结果。与形式证明相比,该方法是可行的,与仅观察模拟结果相比,该方法可得出更可靠,更有价值的结果。同样,该方法还可以系统地分析宏观行为,以获取宏观保证和反馈,工程过程可使用这些保证和反馈来迭代地形成自组织的紧急解决方案。

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