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Minimization of the optical smoke detector false alarm probability by optimizing its frequency characteristic

机译:通过优化光学烟感器的频率特性将其误报概率降到最低

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摘要

The exclusive use of the time domain analysis in the design tuning to lower the probability of false alarms is caused by the output signal binary nature prevailing in the optical smoke detector designs. However, the characteristic of a standard detector circuit is fairly linear up to the output comparator. On the basis of the generalized functional block scheme, for this linear dependence the Laplace transform is derived in this paper. The transfer function obtained is optimized with respect to false alarm probability minimization, for the second and the fourth order cases. Exploiting the optimization results presented, the improvement of the detector design to obtain lower probability of false alarm reduces to the calculation of element parameters from the coefficients of the optimized transfer function. If the requests for detector time response behavior are different from those adopted here, this paper presents a systematic set of design steps that have to be performed to obtain the optimal performance.
机译:由于在光学烟雾探测器设计中普遍存在输出信号二进制特性,因此在设计调整中专门使用时域分析来降低误报的可能性。但是,标准检波器电路的特性直到输出比较器都是相当线性的。在广义功能块方案的基础上,针对这种线性依赖性,本文推导了拉普拉斯变换。对于二阶和四阶情况,获得的传递函数相对于虚警概率最小化进行了优化。利用给出的优化结果,检测器设计的改进以获得较低的误报概率,减少了从优化传递函数系数计算元素参数的过程。如果对探测器时间响应行为的要求与此处采用的要求不同,则本文提出了一组系统化的设计步骤,必须执行这些步骤才能获得最佳性能。

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