Noise resilient discrete-time cross-relation sensor characterisation

P. Gillespie, D. Gaida, P. Hung, R. Kee, S. McLoone
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引用次数: 1

Abstract

In-situ characterisation of thermocouple sensors is a challenging problem. Recently the authors presented a blind characterisation technique based on the cross-relation method of blind identification. The method allows in-situ identification of two thermocouple probes, each with a different dynamic response, using only sampled sensor measurement data. While the technique offers certain advantages over alternative methods, including low estimation variance and the ability to compensate for noise induced bias, the robustness of the method is limited by the multimodal nature of the cost function. In this paper, a normalisation term is proposed which improves the convexity of the cost function. Further, a normalisation and bias compensation hybrid approach is presented that exploits the advantages of both normalisation and bias compensation. It is found that the optimum of the hybrid cost function is less biased and more stable than when only normalisation is applied. All results were verified by simulation.
噪声弹性离散时间相互关系传感器特性
热电偶传感器的原位表征是一个具有挑战性的问题。近年来,作者提出了一种基于交叉关系法的盲识别技术。该方法允许现场识别两个热电偶探头,每个探头具有不同的动态响应,仅使用采样传感器测量数据。虽然该技术比其他方法具有一定的优势,包括低估计方差和补偿噪声引起的偏差的能力,但该方法的鲁棒性受到成本函数的多模态性质的限制。本文提出了一种改进代价函数凸性的归一化项。此外,提出了一种利用归一化和偏置补偿的优点的归一化和偏置补偿混合方法。结果表明,混合代价函数的最优值比只应用归一化时的最优值偏差更小,更稳定。所有结果均通过仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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