• Title/Summary/Keyword: trapezoidal filter

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Design of Efficient Trapezoidal Filter and Peak Value Detection Circuit for XRF Systems (XRF시스템용 효율적인 Trapezoidal 필터 및 최대값 검출 회로 설계)

  • Piao, Zheyan;Chung, Jin-Gyun
    • Journal of the Institute of Electronics and Information Engineers
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    • v.50 no.6
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    • pp.138-144
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    • 2013
  • In XRF systems, various techniques have been developed for the synthesis of pulse shapes using digital methods instead of traditional analog methods. Trapezoidal pulse shaping algorithms can be used for digital multi-channel pulse height analysis in X-ray spectrometer systems. In this paper, an efficient trapezoidal filter architecture is presented. In addition, we present a hardware-efficient peak value detection algorithm. By the proposed algorithm, peak value detection error is decreased by half compared with the conventional algorithm. The proposed Digital Pulse Processing(DPP) algorithm is designed using Verilog HDL and implemented using an FPGA on a test board. It is demonstrated that the implemented DPP board works successfully in practical XRF systems.

Development of Back-emf Filter Circuit for Driving Sensorless BLDC Motors (BLDC 전동기의 센서리스 구동을 위한 역기전력 필터회로 개발)

  • Song, Doo-Young;Lee, Sung-Ho;Jung, Tae-Uk;Cho, Su-Eog;Park, Sung-Jun;Kim, Dong-Ok
    • The Transactions of the Korean Institute of Power Electronics
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    • v.13 no.1
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    • pp.63-69
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    • 2008
  • The position of stator is essential when a trapezoidal BLDC motor is drived. In this paper we proposed a novel sensorless drive system for the trapezoidal BLDC motor without hall sensors or encoders. The resistor Y-connecting method is used to obtain Back-emf of a trapezoidal BLDC motor. Especially, by using the new Back-emf filter circuit proposed in this paper the sensorless characteristic in low speed is improved. The prototype proposed system applied for a 100[W] rating BLDC motor is made and the propriety of the Back-EMF filter circuit is also verified.

Real-Time Implementation of Shunt Active Filter P-Q Control Strategy for Mitigation of Harmonics with Different Fuzzy M.F.s

  • Mikkili, Suresh;Panda, Anup Kumar
    • Journal of Power Electronics
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    • v.12 no.5
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    • pp.821-829
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    • 2012
  • This research article presents a novel approach based on an instantaneous active and reactive power component (p-q) theory for generating reference currents for shunt active filter (SHAF). Three-phase reference current waveforms generated by proposed scheme are tracked by the three-phase voltage source converter in a hysteresis band control scheme. The performance of the SHAF using the p-q control strategy has been evaluated under various source conditions. The performance of the proposed control strategy has been evaluated in terms of harmonic mitigation and DC link voltage regulation. In order to maintain DC link voltage constant and to generate the compensating reference currents, we have developed Fuzzy logic controller with different (Trapezoidal, Triangular and Gaussian) fuzzy M.F.s. The proposed SHAF with different fuzzy M.F.s is able to eliminate the uncertainty in the system and SHAF gains outstanding compensation abilities. The detailed simulation results using MATLAB/SIMULINK software are presented to support the feasibility of proposed control strategy. To validate the proposed approach, the system is also implemented on a real time digital simulator and adequate results are reported for its verifications.

Implementation of Efficient Pile-up Pulse Processing Algorithm Based on Trapezoidal Filter (사다리꼴 필터를 이용한 효율적인 중첩펄스 처리 알고리즘 구현)

  • Piao, Zheyan;Chung, Jin-Gyun
    • Journal of the Institute of Electronics and Information Engineers
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    • v.50 no.8
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    • pp.162-167
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    • 2013
  • X-ray or ${\gamma}$-ray spectroscopy systems are widely used for analyzing material characteristics. Pile-up pulses are very often encountered for several reasons in XRF systems. Thus, it is necessary to reject or recover pile-up pulses to accurately analyze the material under test. In this paper, a pile up pulse rejection and recovery method is presented for XRF systems using trapezoidal pulse shaping of the input signals. Since the proposed method is based on the trapezoidal pulse shaping method widely-used in XRF systems, only two counters and a few registers are needed to implement the additional function of pile-up pulse rejection and recovery. Consequently, the proposed system is much simpler than conventional pulse reconstruction systems. It is shown that the proposed method can detect and reject pile-up pulses exactly. It is also shown that the pile-up pulses can be recovered if some conditions are satisfied.

Embedded Input Shaper: Difference between Trapezoidal Profile and S-curve Profile (내재된 입력성형기: 사다리꼴 프로파일과 S-커브 프로파일의 차이)

  • Ha, Chang-Wan;Lee, Dongwook;Yoon, Byungho;Rew, Keun-Ho;Kim, Kyung-Soo
    • Journal of Institute of Control, Robotics and Systems
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    • v.20 no.11
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    • pp.1125-1130
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    • 2014
  • In this paper, we discuss the relation between the motion profile and pre-filter. As previously reported in various literatures [1-3], a tuned motion profile can effectively reduce residual vibration by placing inherent zeros of the motion profile at the vibratory pole of systems similar to the role of the input shaping technique. From the results, we factorize the motion profile into a basis function and an input shaper. In contrast to the previously reported impulse-sequence-based input shapers, the input shaper extracted from the motion profile has unique characteristics. Thanks to the characteristics of the input shaper extracted from the motion profile, it has advantages to reduce the vibrations caused by not only the modeled vibratory mode but also unmodeled dynamics which exist in higher frequency ranges.

5.2 mW 61 dB SNDR 15 MHz Bandwidth CT ΔΣ Modulator Using Single Operational Amplifier and Single Feedback DAC

  • Cho, Young-Kyun;Park, Bong Hyuk;Kim, Choul-Young
    • ETRI Journal
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    • v.38 no.2
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    • pp.217-226
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    • 2016
  • We propose an architecture that reduces the power consumption and active area of such a modulator through a reduction in the number of active components and a simplification of the topology. The proposed architecture reduces the power consumption and active area by reducing the number of active components and simplifying the modulator topology. A novel second-order loop filter that uses a single operational amplifier resonator reduces the number of active elements and enhances the controllability of the transfer function. A trapezoidal-shape half-delayed return-to-zero feedback DAC eliminates the loop-delay compensation circuitry and improves pulse-delay sensitivity. These simple features of the modulator allow higher frequency operation and more design flexibility. Implemented in a 130 nm CMOS technology, the prototype modulator occupies an active area of $0.098mm^2$ and consumes 5.23 mW power from a 1.2 V supply. It achieves a dynamic range of 62 dB and a peak SNDR of 60.95 dB over a 15 MHz signal bandwidth with a sampling frequency of 780 MHz. The figure-of-merit of the modulator is 191 fJ/conversion-step.

Sensorless Control Method of the BLDC Motor Without Neutral Point (중성점을 사용하지 않는 BLDC 전동기 센서리스 제어 기법)

  • Sim, Kwang-Ryeol;An, Jeong-Ryeol
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.61 no.3
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    • pp.111-115
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    • 2012
  • Generally, brushless DC motor(BLDCM) driving system uses hall sensors or encoders as the mechanical position or speed sensor. It is necessary to achieve the informations of rotor position for driving trapezoidal type brushless DC motor without any position sensor. In this paper, the commutation signals are obtained without the motor neutral voltage, multistage analog filters, A/D converters, or the complex digital phase shift circuits which are indispensable in the conventional sensorless control algorithms. In the proposed method, in stead of detecting the zero crossing point of the nonexcited motor back electromagnetic force for the average motor terminal to neutral voltage, the commutation signal are extracted directly from the specific average line to line voltage with low-pass filter, adder and comparators circuit. In contrast to conventional methods, the neutral voltage is not need; therefore, the commutation signals are insensitive to the common mode noise. Moreover, the complex phase shift circuit can be eliminated. The effectiveness of the proposed method is verified through simulation results.