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91.
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93.
Six distillation column models have been used in studies of the usefulness of the Inverse Nyquist Array (INA) method for design of dual composition control for distillation. Five of the column models are experimental, one describing an industrial column, the others four pilot plants. One column model is obtained by modeling from first principles.
The control strategies investigated and compared are multiloop SISO, 2-way decoupling and l-way decoupling. The control variables are the standard ones, i.e. reflux flow and boilup.
In most of the cases INA has been found to be a useful tool for design of the loops and for comparison of the different control approaches. INA has also been found to be useful for simultaneous tuning of the decouplers and the feedback controllers.
For 2-way decoupling the criterion to minimize interaction at the critical frequency for each primary feedback loop has been found useful in most, but not all, cases. The scheme can be designed by pure gains in the decouplers and there is no reason to introduce dynamics into the decouplers—the systems studied are already sufficiently rich in dynamics.
INA has been found to be a suitable vehicle for the choice between the two possible l-way decoupling schemes.
With the design approach taken, l-way decoupling has been found to provide considerably better control quality than 2-way decoupling in two of the six systems, the differences in control quality being small in the other cases.
The effect of model mismatching on the results, caused e.g. by process nonlinearities, is discussed and simple rules to decrease the parameter sensitivity for 2-way decoupling schemes are given. When model mismatching is considered, the advantage of l-way decoupling over 2-way decoupling seems to increase.
One deficiency of the INA design as used in this paper is that it does not single out the design which is to be preferred on the grounds of robustness. 相似文献
The control strategies investigated and compared are multiloop SISO, 2-way decoupling and l-way decoupling. The control variables are the standard ones, i.e. reflux flow and boilup.
In most of the cases INA has been found to be a useful tool for design of the loops and for comparison of the different control approaches. INA has also been found to be useful for simultaneous tuning of the decouplers and the feedback controllers.
For 2-way decoupling the criterion to minimize interaction at the critical frequency for each primary feedback loop has been found useful in most, but not all, cases. The scheme can be designed by pure gains in the decouplers and there is no reason to introduce dynamics into the decouplers—the systems studied are already sufficiently rich in dynamics.
INA has been found to be a suitable vehicle for the choice between the two possible l-way decoupling schemes.
With the design approach taken, l-way decoupling has been found to provide considerably better control quality than 2-way decoupling in two of the six systems, the differences in control quality being small in the other cases.
The effect of model mismatching on the results, caused e.g. by process nonlinearities, is discussed and simple rules to decrease the parameter sensitivity for 2-way decoupling schemes are given. When model mismatching is considered, the advantage of l-way decoupling over 2-way decoupling seems to increase.
One deficiency of the INA design as used in this paper is that it does not single out the design which is to be preferred on the grounds of robustness. 相似文献
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96.
《Journal of Parallel and Distributed Computing》2014,74(12):3202-3216
The manycore revolution can be characterized by increasing thread counts, decreasing memory per thread, and diversity of continually evolving manycore architectures. High performance computing (HPC) applications and libraries must exploit increasingly finer levels of parallelism within their codes to sustain scalability on these devices. A major obstacle to performance portability is the diverse and conflicting set of constraints on memory access patterns across devices. Contemporary portable programming models address manycore parallelism (e.g., OpenMP, OpenACC, OpenCL) but fail to address memory access patterns. The Kokkos C++ library enables applications and domain libraries to achieve performance portability on diverse manycore architectures by unifying abstractions for both fine-grain data parallelism and memory access patterns. In this paper we describe Kokkos’ abstractions, summarize its application programmer interface (API), present performance results for unit-test kernels and mini-applications, and outline an incremental strategy for migrating legacy C++ codes to Kokkos. The Kokkos library is under active research and development to incorporate capabilities from new generations of manycore architectures, and to address a growing list of applications and domain libraries. 相似文献
97.
针对复杂战场环境下超短波电台天线接收低信噪比信号能力弱和易受定向干扰的缺陷,结合战场超短波电台不规则分布和位置不能任意改变的特点,提出任意结构天线阵信号接收模型,采用蜂群算法优化阵元相位使得天线阵输出信干噪比最大。假设信噪比为0 dB,干噪比为60 dB,且在平面内随机选取8个阵元,采用蜂群算法优化后输出信干噪比为8.633 dB。与改进差分进化算法、遗传算法和粒子群优化算法相比,分别提高了0.577 dB、1.124 dB和1.543 dB。研究成果可为超短波电台组阵通信提供参考。 相似文献
98.
在大多数CAD软件中都有阵列这个命令,一般软件的阵列操作非常简单。作为功能强大的三维造型软件,Pro/ENGINEER的阵列功能也非常强大,但是大多数人只知道Pro/ENGINEER阵列的一些初级应用,碰到复杂点的阵列就转而想别的办法实现。本文主要对Pro/ENGINEER的高级阵列功能进行深入探讨,通过一系列实例来体现Pro/ENGINEER与其它CAD软件在阵列方面的巨大优势。 相似文献
99.
基于溶液相对于电极的运动会使电极附近因电势差作用而产生的离子浓度梯度发生改变,从而使电极电流发生变化等电化学原理,建立一种置于碘(I2)和碘化钾(KI)混合水溶液环境中的阳极—阴极—阴极—阳极(ACCA)四电极阵列传感单元模型。通过理论分析,该传感单元可以局部电解液为惯性质量,利用电解液中带电离子相对于电极的运动来产生并输出附加电流;进一步的建模仿真证明:在一定的加速度范围内(0a x0.149 m/s2),附加电流的大小同加速度呈正比关系,故可以将此电流放大输出,从而实现对加速度大小的表征。可利用MEMS工艺制作,并封装此传感单元成为加速度传感器。 相似文献
100.
为了进一步提高硅微阵列陀螺仪驱动模态的控制精度与稳定性,深入分析了硅微阵列陀螺仪的结构设计和闭环驱动控制技术。基于硅微阵列陀螺仪闭环驱动控制的特点,以现场可编程门阵列(FPGA)为核心控制平台,实现一种基于自激振荡原理的数字化闭环驱动电路。分析并建立了自激振荡与幅度控制的基本模型,基于Simulink实现了闭环自激驱动的仿真。实验结果表明,常温下驱动幅度控制精度达到9×10~(-5),并能有效跟踪驱动模态谐振频率。 相似文献