带有储能元件的非线性器件运行的数字计算机计算

T. Puckett, P. Hinrichs
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引用次数: 0

摘要

本文介绍了一些将非线性运算与储能元件相结合的电子管和晶体管电路运算的数字计算机计算结果。C类放大器、倍频器和阻塞振荡器都是这种类型的电路。这种方法可以消除对分析过程的许多传统限制。例如,在C类放大器的情况下,没有必要假设极板和栅极电压是正弦的,并且电路处于稳态。使用计算机的附加功能是自动计算效率、绘制波形和计算谐波含量;研究瞬态和调制效应的设备;允许电路参数取任意值或随时间、电压和电流变化的可能性;并且允许与设备相关的电路比其他方法通常允许的更复杂的可能性。这种方法的局限性在于问题的编程成本,以及在可用的计算机上运行程序的成本。有时会出现数值精度问题,但通常可以通过额外的编程或运行时间来处理。如果有可以接受代数方程形式的程序的转换器,编程成本通常可以忽略不计。然而,运行时间成本可能是可观的,特别是在一个复杂的电路与许多存储元件的情况下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital Computer Calculation of the Operation of Nonlinear Devices with Energy Storage Elements
This paper presents results on digital computer calculation of the operation of some tube and transistor circuits which combine nonlinear operation with energy storage elements. The Class C amplifier, the frequency multiplier and the blocking oscillator are all circuits of this type. This approach allows many of the conventional restrictions on analysis procedures to be removed. For instance, in the case of the Class C amplifier, it is not necessary to assume that the plate and grid voltages are sinusoidal and the circuit at steady state. Additional features of computer use are the automatic calculation of efficiencies, plotting of waveforms and calculation of harmonic content; the facility of studying the effects of transients and modulation; the possibility of allowing the circuit parameters to take on any values or vary with time or with the voltages and currents; and the possibility of allowing the circuit associated with the device to be more complicated than usually allowed by other methods. Limitations to this approach lie in the cost of programming the problem, and the cost of running the program on an available computer. Questions of numerical accuracy sometimes arise, but can usually be handled with additional programming or running time. If a translator is available which can accept programs in the form of algebraic equations, the programming cost is often negligible. However, running time costs may be appreciable, particularly in the case of a complicated circuit with many storage elements.
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