년 - 년
W-band 소형 레이다용 파형발생부 KCI 등재
국제인공지능학회(구 한국인터넷방송통신학회) 한국인터넷방송통신학회 논문지 제18권 제5호 2018.10 pp.97-102
※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.
본 논문에서는 W-대역 소형 레이다용 파형발생부를 설계 및 제작하였다. 제작된 파형발생부는 DDS를 적용하여 CW 및 FMCW 등 시스템에서 요구되는 다양한 파형을 고속으로 정밀하게 생성한다. 시스템 자체 점검으로 거리 지연 및 거리 추적 시험 시 별도의 점검장비 없이 레이다 자체만으로 시험이 가능하도록 LO 경로를 두 개로 설계하여 스위치를 통해 선택 가능하도록 구현하였다. 제안된 파형발생부는 대역폭 125 MHz, 위상잡음 1 kHz 오프셋(offset)에서 –91 dBc/Hz, 불요 파 –63.2 dBc가 측정되었다. 본 논문에서 제시한 파형발생부를 이용하여 W-대역 소형 레이다용 송수신모듈에 바로 적용이 가능할 것으로 예상한다.
In this paper, W-band Waveform Generator for compact radar has been designed and fabricated. DDS (Direct Digital Synthesizer) is applied to generate CW (Continuous Wave) and FMCW (Frequency Modulation Continuous Wave) waveform at high speed. We designed two LO (Local Oscillator) paths for functions of distance delay and distance tracking tests at the prpposed system without extra test equipment. Two mode selections are provided by switch. It is observed that fabricated waveform generator performs –91 dBc/Hz phase noise at offset 1 kHz and –63.2 dBc spurious. Proposed W-band Waveform Generator is expected to apply for W-band compact radar transceiver module.
Design of Waveform Generator for Spiral Scan Imaging
[Kisti 연계] 대한자기공명의과학회 대한자기공명의과학회 학술대회논문집 1999 p.89
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Multi-level Waveform Generator with Delay Control for Low Distorted Class D Amplifiers
[NRF 연계] 한국과학기술원 반도체설계교육센터 IDEC Journal of Integrated Circuits and Systems Vol.7 No.2 2021.04 pp.17-22
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A multi-level waveform generator with delay control is proposed for improving total-harmonic distortion of class D amplifiers. The voltage-mode class D amplifier is a circuit that amplifies the output voltage at the load to be twice almost the power supply voltage by using an input driving signal. The conventional 3-level class D amplifier generates a lot of harmonics due to the switching operation, and the harmonics can only be removed by the frequency response characteristics of the load. A configuration of the class D amplifier that sets an intermediate voltage level to reduce the harmonics has been presented, but it is required to generate the driving waveform for this. The proposed waveform generator makes driving signals that can change the voltage applied to the amplifier load from three to five levels. The generated step time can be optimally set depending on the driving frequency by controlling the RC delay circuits in the edge detector of the proposed generator. The generator IC fabricated in the area of 840 μm × 640 μm using the TSMC 0.25 μm CMOS process shows 5-level driving waveforms converted the input pulse-width modulation signal of 200 kHz. The measurement results show that the intermediate step time can be adjusted to 0.48 μs by controlling the delay circuit of the proposed waveform generator.
Research on the Waveform Generator Technology for the SAR Payload
[Kisti 연계] 한국천문학회 한국천문학회보 Vol.37 No.2 2012 p.228
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Digital waveform generation technology for SAR payload can be divided into DDS(Direct Digital Synthesizer) method and Memory Mapped(M/M) method. DDS is the single chip which consists of the Sine Table, NCO(Numerically Controlled Oscillator), DAC, and so on. DDS method is a very simple method because the circuit configuration is not complex but has a disadvantage that can not control phase and amplitude easily by using NCO. M/M method has the complexity of the circuit configuration because it requires the memories which stores the waveforms, the control circuits, and DAC. And this method should apply the high interface technology for being compatible with the wide bandwidth of the digital signal and has the difficulty for PCB design because the number of the signal lines should be increased according to the number of the data bits for DAC. Although it has several disadvantages, this method has the capability of pre-distortion function which can compensate the phase and amplitude characteristics of the system and also has an excellent advantage to make any arbitrary waveform, so this method is considered as an important technology with DDS method. This research describes the technological trends of the waveform generator for the SAR payload and analyzes the characteristics of the technology.
Anti-inflammatory Effect of Arbitrary Waveform Generator Treatment in Rats
[Kisti 연계] 대한의생명과학회 The Journal of biomedical laboratory sciences Vol.14 No.1 2008 pp.39-45
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Inflammation is the complex biological response of injured tissues to harmful stimuli. A cascade of biochemical events propagates and matures the inflammatory response, involving the local vascular system, the immune system, and various cells within the injured tissue. The immune system is often involved with inflammatory disorders, demonstrated in both allergic reactions and some myopathies, with many immune system disorders resulting in abnormal inflammation. An Arbitrary Waveform Generator (AWG) is a piece of electronic test equipment used to generate electrical waveforms for the treatment of patients. The patients with gastritis and arthritis have been known to have a relatively favorable prognosis with AWG treatment. Accordingly, we examined the effects of AWG treatment in gastritis and arthritis animal model. The compound 48/80 was used to induce animal gastritis model. The tissue malone dialdehyde (MDA) and serum histamine levels, and the activity of superoxide dismutase (SOD) in stomach tissue were measured. The tissue MDA and serum histamine levels in AWG treated groups exhibited the decreased tendency compared with control group, whereas the tissue SOD activity was slightly increased. The Freund's complete adjuvant was used to induce animal arthritis model as well. The paw edema volume and the width of ankle joint were determined. The AWG treatment significantly decreased the paw edema volume after 5th day of treatment. Although further studies should be performed to confirm the effects of AWG treatment, present study suggest that AWG treatment might be used as a complementary treatment for the gastritis or arthritis treatment.
[Kisti 연계] 대한의용생체공학회 대한의용생체공학회 학술대회논문집 1996 pp.260-265
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The purpose of this study was to implemented a general purpose programmable nerve stimulator system as a research tool for studying psychophysiological performance associated with various stimulation waveform. This system is composed of hardware and software, the former are the personal computer(180586) and control unit(one-chip microprocessor, D/A converter, digital output), the latter are programmed in VISUAL BASIC and ASSEMBLY Which are programmed for the programmable nerve stimuli pattern editor and communication interface, waveform preprocessing, and stimuli generator. The control unit which is entrolled by the personal computer is capable of delivering the programmable nerve stimuli waveform. This system has research potential for determining the effect of various neuromuscular blockade in alternated physiological stat is.
High-efficiency Operation of Switched Reluctance Generator based on Current Waveform Control
[Kisti 연계] 대한전기학회 분과 Journal of international Conference on Electrical Machines and Systems Vol.2 No.1 2013 pp.120-126
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The main aim of this paper is to expound high-efficiency operation of Switched Reluctance Generator (SRG) based on the current waveform. For this purpose, theoretical analysis of the copper loss and iron loss of the system is done first. Then, necessary simulation is done to find the variation trend of the copper loss and iron loss with the variation of the current waveform at the same output power. Finally, the best current waveform which can make the system operate with high efficiency is obtained by considering the influence of these two kinds of loss. In order to verity the simulation results, the experimental platform of DC motor-SRG is built and the modified angle position control (APC) method which can specify the current shape optionally is presented. By comparing the system efficiency at the three kinds of typical current waveform, the correctness and feasibility of the theory is verified. The proposed method is simple, reliable, and easy to achieve.
[Kisti 연계] 대한전기학회 Journal of electrical engineering & technology Vol.13 No.3 2018 pp.1294-1303
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This study optimises the no-load voltage waveform of tubular hydro-generators by a simple design scheme. For different centerlines of the pole shoe and damper bar, the optimisation effects on the no-load voltage waveform are investigated in two tubular hydro-generators with different weighted powers (34 MW and 18 MW). The results are compared with those of the traditional stator-slots skewed design. The quality of the no-load voltage waveform was related to the shifting degree, and the different optimisation effects between the integer slot generator (q = 2) and the fractional slot generator (q = 11/2) were analysed. This research can improve the quality of the power output and no-load voltage waveform, and provide an effective reference for improving the industrial design and manufacture level of tubular hydro-generators.
[Kisti 연계] 대한전기학회 Journal of electrical engineering & technology Vol.9 No.1 2014 pp.286-292
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This paper presents the parameters optimization technology for generating the first short stroke lightning current waveform($10/350{\mu}s$) which is necessary for the performance tests of components of lightning protection systems, as required under IEC 62305 and the newly amended IEC 62561. The circuit using the crowbar device specified in IEC 62305 was applied to generate the lightning current waveform. To find the proper parameters of the circuit is not easy because the circuit consists of two parts; circuit I, which relates to the front of current waveform, and circuit II, which relates to the tail. A simulation in PSpise was carried out to find main factors related to the front and tail of $10/350{\mu}s$. The lightning current generator was developed by utilizing the circuit parameters found in the simulation. In the result of experiments, new parameters of the circuits need to be changed because of the difference between the simulation and the experiment results. Using the iterative method, the optimized parameters of the circuits was determined. Also a multistage-type external coil and a damping resistor were proposed to make the efficiency of generation to enhance. According to the result in this paper, an optimized first short stroke lightning current waveform was obtained.
반도체 외장형 자체 테스트를 위한 임의 파형 생성기 구현
[Kisti 연계] 한국반도체및디스플레이장비학회 반도체디스플레이기술학회지 Vol.20 No.3 2021 pp.146-151
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We introduce an arbitrary waveform generation method and its H/W implementation case based on Rademacher and Walsh function. According to the orthogonal and periodic features of Rademacher and Walsh function, simple calculations can generate arbitrary waves with affordable logics. We implemented an FPGA-based AWS using above two functions, and verified. HDL simulation shows the proposed idea can draw desired analog test waveforms very fast, and its H/W size is promising to Built-Out Self-Test(BOST) logics for AI ICs.
[Kisti 연계] 대한전자공학회 대한전자공학회 학술대회논문집 2001 pp.177-180
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A saw-tooth waveform generator with current-controllable frequency is described. The generator utilizes operational transconductance amplifiers as switching element. It features simple and wide sweep capability. The circuit built with commercially avaliable components exhibits good linearity of current to frequency and relatively low temperature sensitivity.
DSP를 이용한 자기공명영상의 경사자계 파형 발생기 개발
[Kisti 연계] 대한전기학회 대한전기학회 학술대회논문집 1999 pp.3147-3149
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In this paper, we develop a TMS320C31- 60 DSP board to generate spiral gradient waveforms for Spiral imaging, one of the ultra fast MRI methods. In Spiral imaging, accurate gradient waveforms are very important to acquire high quality image. For this purpose, sampling rate for generating the gradient waveforms is set twice as high as the data sampling rate. With the developed DSP board accurate gradient waveforms are obtained. Ultra fast MR image with the developed DSP board is currently under development.
[Kisti 연계] 대한전기학회 대한전기학회 학술대회논문집 1999 pp.2152-2154
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In this paper, we suggested the design rule of high-voltage rectangular waveform generator working in low frequency domain (5Hz $\sim$ 60Hz). Most of the commonly used power electronic switching devices have voltage ratings up to several kV. So it is difficult to design and fabricate high-voltage switching systems with the power electronic devices alone. We have combined IGBTC(1200V, 50A) with the specially designed transformer to get the high-voltage rectangular waveforms up to 40kV. In this work. next two things are the main factors. The first one is design of transformer working low-frequency domain close to 5Hz. And the second one is additional voltage source to floating the transformer voltage output. As a result, we can get frequency-variable and high-voltage rectangular voltage waveform and this can be a more efficient power source of sandpaper manufacturing process.
[Kisti 연계] 대한전기학회 대한전기학회 학술대회논문집 1998 pp.959-961
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In this paper, we present design rule of high-voltage rectangular generator working in wide band frequency domain. Though power electronics now have voltage ratings up to several kV, it is difficult to design and fabricate high-voltage systems with the power electronic devices alone. So we have combined IGBT with technically designed transformer to get the high-voltage rectangular waveforms. In this work, next two things are the main factors. The first one is design of transformer working low-frequency domain of less than 10Hz. And the second one is adding offset voltage part. As a result, we can get variable frequency high-voltage rectangular waveform and this can be used as a voltage source of sandpaper manufacturing process.
[Kisti 연계] 전력전자학회 전력전자학회 논문지 Vol.21 No.1 2016 pp.58-64
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This study presents a design method for a single-loop voltage controller that is suitable for an arbitrary waveform generator (AWG). The voltage control algorithm of AWG should ensure high dynamic performance and should attain sufficient robustness to disturbances such as inverter nonlinearity, sensor noise, and load current. By analyzing the power circuit of AWG, control limitation and control target are presented to improve the dynamic performance of AWG. The proposed voltage control algorithm is composed of a single-loop output voltage control, an inverter current feedback term to improve transient response, and a load current feedforward term to prevent voltage distortion. The guideline for setting control gain is presented based on output filter parameters and digital time delay. The performance of the proposed algorithm is proven by experimental results through comparison with the conventional algorithm.
임의 전압파형발생기를 이용한 다중 피에조 잉크젯 3D 프린팅 장비 개발
[Kisti 연계] 한국정밀공학회 한국정밀공학회지 Vol.32 No.9 2015 pp.781-786
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Recently, studies of 3D printing methods have been working in various applications. For example, the powder base method laminates the prints by using a binding or laser sintering method. However, the draw back of this method is that the post process is time consuming and does not allow for parts to be rapidly manufactured. The binding method requires the post process while the time required for the post process is longer than the manufacturing time. This paper proposes a UV curing binding method with an integrated piezo printing head system. The optimization of an arbitrary waveform generation for the control of a UV curable resin droplet was researched, in addition to developed optimized UV curing processes in multi nozzle ink jet heads.
고전압 용량성 결합 플라즈마 시스템의 개선된 전압 파형 출력을 위한 펄스 전류 발생장치 회로
[Kisti 연계] 전력전자학회 전력전자학회 논문지 Vol.24 No.3 2019 pp.153-160
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This study proposes a current source-type pulse generator to improve output voltage and current waveforms under a capacitively coupled plasma (CCP) system. The proposed circuit comprises two parallel-connected current source-type converters. These converters can satisfy the required output waveforms of plasma processing. The parallel-connected converters operate without reverse current fault by applying a time-delay control technique. Conventional voltage source converters based on pulse power supply exhibit drawbacks in short-circuit current, and problems occur when they are applied to a CCP system. The proposed pulse power supply based on a current source converter fundamentally solves the short-circuit current problem. Therefore, this topology can improve the voltage and current accuracy of a CCP system.
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