The author designed and tested the high sensitive three-phase power factor meter and relay circuit, and dealt with the circuit to detect the phase of the current and the voltage. An operational amplifier comparator circuit and two single-phase transformers are used to control and detect the phase angle between the current and the voltage. The results obtained are as follows: 1. Converting the sine wave input current into the constant amplitude rectangular wave form by using a transistor chopper circuit, the power factor can be measured precisely over the load current of 0.08 A. 2. Using the moving coil type current meter, the power factor meter can be read in uniform . scale all over the range. 3. Using the three-phase power factor meter, the power factor relay which works at any power factor can be made.
본 실험장치에 관한 이상의 이론과 실험을 통해 다음과 같은 결론을 얻을 수 있다. 1. 연산기로써 전류입력파형을 부경전류의 다소에 관계없이 일정진폭의 단형파로 변화시킴으로써 부경전류 0.01[A] 이상의 역율의 정밀측정이 가능하다. 2. 영구자석가동코일형 직류전류계를 사용하여 출력파형의 평균치들 얻음으로써 역율값을 0-1의 전절원에 걸쳐 평균 눈금으로 직독할 수 있다. 3. Fig. 19에서 알 수 있듯이 진력율이나 지력율에 관계없이 측정가능하며 모두 정의 눈금으로 읽을 수 있다. 4. 출력저항에서 역률 Relay 회로를 쉽게 도입할 수 있어 전기기계의 자동제어, 보호, 경보 등의 회로를 쉽게 적용할 수 있다.
A SCR static breaker was studied on the Resistive and inductive load, then on the overload break circuit using operational Amplifier. In this paper, the principal circuit required for forced commutation was voltage commutation by the introduction of a parallel Capacitor. The results obtained are follows; 1. In thecondition that the tima constant of R-C circuit is larger than the turn off time of SCR, the breaker has low transient phenomena and no recovery vol age. 2. By using OP Amplifier on the load circuit, overcurrent trip point will be able to adjust to the wide range of over current. 3. In the over current qrcuit, the power loss was reduced remarkably.
Mordern Ocean-going ships utilize stabilization techniques in order to minimize the effects of oscillations due to the unwanted disturbances. In this paper, as an elementary design of automatic control system with linear-state vari;tble feedback and series compensator for ship stabilization, analysis and design is limited to the linear time-invariant single input and output system. In order for the Controlled system to meet the requirements of stability, accuracy and transient response, a model of the automatic control system is proposed. For the analysis and design of this model, the state-space method, that is, the mordern way, or an alternative to the transfer function method of describing a linear system that utilize the state variables and state equations, is applied.
This paper is to study on the analysis of mechanical and electrical system uoing CHAN-MAI flow graph. This graph is considerably different from the existing one's in appearance and easier to coustruct. By applying this graph to the mechanical and electrical system, the gain of any variables is easily obtained without any equations between input and output nodes.