...
首页> 外文期刊>Sensors and Actuators >On the performance of gas sensor arrays in open sampling systems using Inhibitory Support Vector Machines
【24h】

On the performance of gas sensor arrays in open sampling systems using Inhibitory Support Vector Machines

机译:使用抑制性支持向量机的开放采样系统中气体传感器阵列的性能

获取原文
获取原文并翻译 | 示例

摘要

Chemo-resistive transduction presents practical advantages for capturing the spatio-temporal and structural organization of chemical compounds dispersed in different human habitats. In an open sampling system, however, where the chemo-sensory elements are directly exposed to the environment being monitored, the identification and monitoring of chemical substances present a more difficult challenge due to the dispersion mechanisms of gaseous chemical analytes, namely diffusion, turbulence, and advec-tion. The success of such actively changeable practice is influenced by the adequate implementation of algorithmically driven formalisms combined with the appropriate design of experimental protocols. On the basis of this functional joint-formulation, in this study we examine an innovative methodology based on the inhibitory processing mechanisms encountered in the structural assembly of the insect's brain, namely Inhibitory Support Vector Machine (ISVM) applied to training a sensor array platform and evaluate its capabilities relevant to odor detection and identification under complex environmental conditions. We generated — and made publicly available — an extensive and unique dataset with a chemical detection platform consisting of 72 conductometric metal-oxide based chemical sensors in a custom-designed wind tunnel test-bed facility to test our methodology. Our findings suggest that the aforementioned methodology can be a valuable tool to guide the decision of choosing the training conditions for a cost-efficient system calibration as well as an important step toward the understanding of the degradation level of the sensory system when the environmental conditions change.
机译:化学抗性转导为捕获散布在不同人类栖息地的化合物的时空和结构组织提供了实用优势。但是,在开放式采样系统中,化学感应元素直接暴露于要监测的环境中,由于气态化学分析物的扩散机制(即扩散,湍流,和平流。这种积极变化的实践的成功受到算法驱动形式主义的适当实施以及实验方案的适当设计的影响。在此功能性联合配方的基础上,本研究基于昆虫大脑结构组装中遇到的抑制性加工机制,研究了一种创新的方法,即用于训练传感器阵列平台的抑制性支持向量机(ISVM)。评估其在复杂环境条件下与气味检测和识别有关的能力。我们在定制设计的风洞试验台设施中通过化学检测平台(包括72个基于电导性金属氧化物的化学传感器)构成了广泛且独特的数据集,并公开提供了该数据集,以测试我们的方法。我们的发现表明,上述方法可能是指导选择培训条件以进行具有成本效益的系统校准的决策的有价值的工具,并且是在环境条件发生变化时理解感觉系统退化水平的重要步骤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号