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Digital Control of a Bank of IIR Filters in Optimal Processing of Signals From Pulse Radiation Detectors

机译:一组IIR滤波器的数字控制,用于对脉冲辐射探测器的信号进行最佳处理

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New algorithm for measurement of mean count rate of pulses from radiation detectors is described. The algorithm is based on the control of a bank of digital IIR filters governed by the state of mean count rate-stationary or transient. The algorithm solves successfully the compromise between the contradictory requirements for low statistical fluctuations in steady state and fast response to sudden changes of mean count rate. The design of the bank of IIR filters is carried out by using the Chebyshev approximation of the second kind in order to achieve the high selectivity and high stopband attenuation applying as low as possible order of the constituent filters. All designed filters are of the second order. The static and dynamic characteristics of the new algorithm and the corresponding computational efficiency are tested and compared with those of the traditional ratemeter algorithms. The state of mean count rate, stationary or transient, is determined by a circuit for estimation of the gradient of mean count rate. The numbers of threshold levels within the adaptation logic circuit and their mutual positions have been optimized to achieve the best compromise
机译:描述了一种用于测量来自辐射探测器的脉冲平均计数率的新算法。该算法基于一组数字IIR滤波器的控制,该数字IIR滤波器受固定的或瞬态的平均计数率状态控制。该算法成功地解决了稳态下统计波动小和快速响应平均计数率突然变化的矛盾要求之间的折衷。 IIR滤波器组的设计是通过使用第二种Chebyshev逼近来进行的,以实现高选择性和高阻带衰减,并以尽可能低的阶数构成滤波器。所有设计的滤波器均为二阶。测试了新算法的静态和动态特性以及相应的计算效率,并与传统的速率计算法进行了比较。固定或瞬态的平均计数率的状态由用于估计平均计数率的梯度的电路确定。自适应逻辑电路中阈值电平的数量及其相互位置已得到优化,以实现最佳折衷

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