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Minimal Symmetric Model-Set Design Strategy on Hypersphere for Multiple-Model Approach

机译:用于多模型方法的超球面最小对称模型集设计策略

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The design of the model set used in a multiple-model algorithm is one of the most important problems in the application of the multiple-model approach. It is appealing for many applications in practice that the models used are symmetrically distributed. Furthermore, there is a strong incentive to reduce the computational costs which are proportional to the number of the models used. For this reason, we present a minimal symmetric model-set design strategy which defines a simplex of models that lie on a hypersphere by matching up to the 2th moment of the system mode. For an n-dimensional space, apart from the center model, only n+1 models are required. The probability mass applied to each model is proportional to 1/(n+1).Simulation results justifies that this model-set designed here outperforms the symmetric model-set on axes in estimation accuracy.
机译:多模型算法中使用的模型集的设计是多模型方法应用中最重要的问题之一。实际上,对于许多应用程序而言,所使用的模型是对称分布的。此外,强烈希望减少与所用模型数量成比例的计算成本。因此,我们提出了一种最小的对称模型集设计策略,该策略通过匹配系统模式的第2个矩来定义位于超球面上的模型的单纯形。对于n维空间,除中心模型外,仅需要n + 1个模型。对每个模型的概率质量与1 /(n + 1)成正比。仿真结果证明,本文设计的模型集在估计精度上优于轴上的对称模型集。

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