Book (Practical) Electrical engineering Basic Control Engineering and Converter Circuit : Kenji Taniguchi

※Please note that product information is not in full comprehensive meaning because of the machine translation.
Japanese title: 単行本(実用) 電気工学 基礎から学ぶ制御工学と基本コンバータ回路 / 谷口研二
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Item number: BO4869362
Released date: 11 Sep 2024

Product description ※Please note that product information is not in full comprehensive meaning because of the machine translation.

Electrical Engineering
[Introduction to the Contents]
In order to aim to become a power electronics engineer who can discuss at a higher level through the study focusing on the acquisition of basic science, it was decided to publish "Switching power supply circuits and their applications learned from the basics".
This series is designed to bridge engineering education in universities and practical education in universities and practical education in enterprises. It is expected that the contents of this series slightly emphasize theoretical aspects based on the image of physical phenomena.
It is important to design inverters and converters by learning through the series as a whole. It is also important that power supply circuit designers become advanced engineers who can solve problems by investigating the causes of equipment failures and malfunctions by scientific methods.
It is important to understand the control theory as well as the control mechanism that maintains a specified output voltage by adjusting the on / off timing of power semiconductor elements even if there is a sudden change in output current or voltage due>
3. Negative Feedback
3.1 Transfer Function for Negative Feedback System
3.2 Synthesis Method of Block Diagram
3.3 Feedback Control
3.4 System Stability Evaluation Method
3.4.1 Rous Stability Evaluation Method
3.4.2 Nyquist Stability Evaluation Method
3.5 Loop Compensation
3.6 Command Value Tracking Method
3.5 Loop Compensation Method
3.6 Command Value Tracking Method
3.7 Open Loop Transfer Function Suitable for Converters
3.8 Suppression of Disturbance / Noise
3.8.1 Influence of Disturbance / Noise
3.8.2 Suppression of Disturbance / Noise with two degree-of-freedom Control System
4. Root Locus Method
4.1 Root Locus portrayal
4.2 Root Locus Image
4.3 Examples of Frequency Characteristics of Voltage Mode Control Loop Tv (j ω)
Stability of System Operation by Double Feedback
Circuit Method of Current Mode Control
Current Peak Mode Control
Current Average Mode Control
11. Ripple-Based Control
Constant On-Time Control
Ripple Ripple Generation Circuit
Constant Switching Frequency
Equilibrium Control
Basic Operation
Constant Switching Frequency
Balance Modified Hysteresis Control
Constant Ripple-Based Control Method
Appendix
A. Model of PWM Switch in DCM Mode
B. Phase Boost of Loop Compensation Circuit with Properly Placed Shocks and Poles
Citations and References
1.1 1.2 5.1 5.2 5.3 6.1 1.3 6.1.1 6.1.2 6.1.3 6.2 6.2.1 6.2.2 6.2.3 7.1 7.2 7.2.1 2.1 7.2.2 7.2.3 7.3 7.3.1 7.3.2 7.3.3 7.4 7.4.1 7.4.2 8.1 2.2 8.2 0 8.3 8.4 8.5 9.1 9.1.1 9.1.2 9.1.3 9.2 2.3 9.2.1 9.2.2 10.1 10.2 10.3 10.3.1 10.3.2 10.3.3 10.4 10.4.1 2.3.1 10.4.2 11.1 11.1.1 11.1.2 11.2 11.2.1 11.2.2 11.2.3 11.3 0 2.3.2