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The imprecise polynomial circuit optimization is based on arithmetic transformation method, considering the fixed point and floating point representation condition first, then give a realization of circuits under different accuracy boundary, trade off error with power dissipation and area, applying branch and bound method to find the solution with minimal cost, determine the minimal word length which satisfies the error bound, make use of the automation synthesis approach to get ultimate optimize structure at the same time.

非精确多项式电路优化基于算术变换方法,首先考虑电路的定点和浮点表示情况,给出电路在不同精度界限下的实现,进行误差和功耗、面积的权衡,然后应用分枝定界方法求解出最小代价电路,决定满足误差要求的最小字长,同时利用自动综合优化方法得到最终的优化结构。

On the basis of the above results of detecting methods, the instruction signal calculating circuit is designed according to i〓, i〓 calculating mode. Compensation current generating circuit is also designed and implemented. Its current following circuit is designed according to the instantaneous value comparing mode that used constant time control. The source current detection based control mode and composite control mode and their implementation are firstly introduced in our country. The method and the principle of dc side capacitor voltage control are explained clearly.

根据检测方法的研究成果,采用i〓、i〓运算方式构成并联型电力有源滤波器的指令电流运算电路;对补偿电流发生电路进行了电路设计和实施,其中电流跟踪控制电路采用电流跟随性能好、可靠性高的定时控制瞬时值比较方式;在国内首次研究并实施检测电源电流控制方式和复合控制方式;清楚地阐明了并联型电力有源滤波器直流侧电压控制的原理和方法,并在装置中实施。

Based on the research results of Chaos theory, in this dissertation, it has made detailed analysis of the chaotic signal generator. Firstly, the characteristic and various detection methods of chaotic signal are recommended. Secondly, with the aid of software, such as MATLAB, PSPICE, EWB, etc, discussion of the process of generating chaotic signal proceeds. Through simulation, the output result of several kinds of chaotic circuit are analyzed and compared. Thirdly, aiming at Chuas chaotic circuit, through debugging, the impacts by components and parts in the circuit, such as operation amplifier, capacity, inductor, etc, has been further investigated. And then provides a new scheme to implement Lorenz chaotic system, the circuit design and analysis are presented in detail and it can be realized by the hardware of programmable arrays FPGA, the experimental results indicate that this scheme has the advantages of easy operation, flexible design and high efficiency. An application example in secure communications is also provided. Finally, through picking up the characteristic parameter-Lyapunov exponent of the Chaos we can analyze the performance of different chaotic signal generators.

本文在混沌理论研究成果的基础上,对混沌信号的产生做了详细的分析,涵盖以下内容:首先介绍了混沌的定义,混沌信号的基本特性和各种判别方法,特别是对简单的一维Logistic映射的硬件实现问题做了初步探索;其次对混沌信号的产生方法进行讨论,借助于MATLAB、PSPICE、EWB等仿真软件,对几种混沌电路输出的混沌信号进行了分析比较,并在此基础上针对典型三阶连续自治系统Chua's电路作进一步实验研究,通过混沌电路调试,深入研究电路中各元器件,特别是运算放大器、电容、电感等对混沌信号时域以及频谱的影响;再次研究连续混沌系统的数字化硬件产生,设计了Lorenz混沌电路在现场可编程门阵列FPGA上实现的新方案,在保密通信中的应用实验结果表明该方案具有操作简单、设计灵活、效率高等优点;最后针对不同混沌系统,采取不同算法,提取混沌特性参数Lyapunov指数,进而对不同的混沌信号发生器的性能进行了分析。

For the circuit to work,of course,polarities of both the base and collector circuits have to be correctforward bias applied to the base circuit,and the collector supply connected so that the polarity of the common element(the emitter is the same from both voltage sources.

对于电路的工作来说,当然,基极和集电极电路是需要更正的(正向偏置电压加在基极电路和集电极电路以便于发射极的电压极性和电压源的电压极性是相同的。

With this mode of working the base-emitter circuit is the input side;and the emitter through base to collector circuit the output side.although these have a common path through base and emitter, the two circuit are effectively separated by the fast that as far as polarity of the base circuit is concerned,the base and upper half of the transistor are connected as a reverse biased diode.hence there is no current flow from the base circuit into the collector circuit.

这一工作模式下,基极-发射极电路是输入端,发射极通过基极,再到集电极电路的输出端。虽然它们都有一个共同的路径通过基极和发射极,这两个电路是通过和基极电路相关的尽可能的有效快速分离开的,基极和基极以上的一半以上的晶体管作为一个反偏二极管与之相连接。

In this paper the commutate circuit principle and work process of the commutate circuit, the composing and work principle of frequency conversion circuit, main switch element IGBT structure feature turn on and turn-off process dynamic and static switch feature and the work principle of invert were analyzed .

本论文分析了整流电路及相控电路的原理和工作过程;变频电路的组成和工作原理;主开关器件IGBT的结构特点、导通及关断过程、动态静态开关特性;逆变电路的工作原理。

First introduction whole wave commutate electric circuit of work principle, immediately after introduction the electric capacity filter the function characteristics of an electric circuit, and in the electric circuit adoption exaltation stability, exaltation temperature stability and limit flow a type over flow protection electric circuit of concrete measure with insure an electric circuit safety stability of work.

首先介绍了全波整流电路的工作原理,接着介绍了电容滤波电路的性能特点,然后引入了具有放大环节和辅助电源的串联可调式稳压电源,并在电路中采用了提高稳定度,提高温度稳定性及限流型过流保护电路的具体措施,以确保电路安全稳定的工作。

In the aspect of Opto—electrical signal processing, because the heterodyne interference signal is a high frequency fringe signal, how to measure the phases change of this signal——including the integer part of phases change over 2π and decimal part of phases change within 2π, is a difficult problem in electrical circuit technique.

一方面,该电路能同时测量出相位改变量的2π整数部分和2π以内的小数部分,从而实现了大量程和高精度的统一;另一方面,由于该电路是模拟电路,其最高工作频率可以远大于由数字集成电路组成的条纹计数电路,故在实际应用中,其工作频率的设计范围能够适应较宽的外差干涉差频范围,这就为高速激光外差干涉测量打下了基础。

The gyroscope is the key device for stabilizing, scanning and tracking in the seeker. The work mechanism of the gyroscope in the seeker is illustrated detailedly through analyzing the PL-2 missile seeker"s structure. The gyroscope electric circuit, including the gyroscope"s driver circuit, the gyro shaft position detecting circuit and the gyroscope"s precessional circuit, was designed according to the gyroscope"s work mechanism.

陀螺是仿真导引头中稳定、搜索和跟踪的关键部件,论文从分析PL-2导弹红外点源导引头的结构和特点出发,对其中的稳定陀螺工作机理进行了详细的研究,并根据陀螺的工作机理,自行研制了一套陀螺电路,包括陀螺驱动电路、陀螺轴位置检测电路和陀螺进动电路,并得到了实验验证,效果良好。

The gyroscope is the key device for stabilizing, scanning and tracking in the seeker. The work mechanism of the gyroscope and especially the precession theory in the seeker is illustrated detailedly through analyzing the PL-2 missile seeker"s structure. The gyroscope electric circuit, including the gyroscope"s rotary circuit,the gyroscope"s precessional circuit and the gyro shaft position detecting circuit, was designed according to the gyroscope"s work mechanism.

陀螺是仿真导引头中稳定、搜索和跟踪的关键部件,论文从分析PL-2导弹红外点源导引头的结构和特点出发,对其中的稳定陀螺工作机理特别是陀螺进动理论进行了详细的研究,并根据陀螺的工作机理,自行研制了一套陀螺电路,包括陀螺旋转电路、陀螺进动电路和陀螺轴位置检测电路,并得到了实验验证,效果良好。

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