• 제목/요약/키워드: Circuit Model Parameter

검색결과 215건 처리시간 0.021초

최적의 측정값 구간의 길이를 갖는 최소 공분산 유한 임펄스 응답 필터 기반 디지털 위상 고정 루프 설계 (A Digital Phase-locked Loop design based on Minimum Variance Finite Impulse Response Filter with Optimal Horizon Size)

  • 유성현;배동성;최현덕
    • 한국전자통신학회논문지
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    • 제16권4호
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    • pp.591-598
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    • 2021
  • 디지털 위상 고정 루프는 위상 동기화를 위해 사용되는 회로로 일반적으로 통신, 회로분야 등 다양한 분야에서 사용된다. 디지털 위상 고정 루프를 설계 시 상태추정기를 사용하는 경우 보통 칼만 필터와 같은 무한 임펄스 응답 상태추정기를 활용해왔다. 일반적으로 무한 임펄스 응답 상태추정기 기반 디지털 위상 고정 루프의 성능은 우수하지만, 초기값의 부정확, 모델 오차, 외란 등의 예상하지 못하는 상황에서 급격한 성능저하가 발생할 수 있다. 본 논문에서는 새로운 디지털 위상 고정 루프를 설계 하기 위해 최적의 측정값 구간 길이를 갖는 최소 공분산 유한 임펄스 응답 필터를 제안한다. 제안된 유한 임펄스 응답 필터의 중요 파라미터인 측정값 구간 길이를 구하기 위해 수치적 방법을 소개하며, 필터의 이득을 얻기 위해 비용함수로 오차의 공분산 행렬을 설정하고, 이를 최소화 하기 위하여 선형 행렬 부등식을 사용하였다. 제안된 디지털 위상 동기 루프의 우수성과 강인성을 검증하기 위해 노이즈 정보가 부정확한 상황에서 기존 방법과의 비교 및 분석을 위한 시뮬레이션을 수행하였다.

저속 센서리스 제어의 역기전력 추정 성능 향상을 위한 모터 파라미터 추정과 전압 오차의 개선 (Identification of Motor Parameters and Improvement of Voltage Error for Improvement of Back-emf Estimation in Sensorless Control of Low Speed Operation)

  • 김경훈;윤철;조내수;장민호;권우현
    • 전기학회논문지
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    • 제67권5호
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    • pp.635-643
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    • 2018
  • This paper propose a method to identify the motor parameters and improve input voltage error which affect the low speed position error of the back-emf(back electromotive force) based sensorless algorithm and to secure the operation reliability and stability even in the case where the load fluctuation is severe and the start and low speed operation frequently occurs. In the model-based observer used in this paper, stator resistance, inductance, and input voltage are particularly influential factors on low speed performance. Stator resistance can cause resistance value fluctuation which may occur in mass production process, and fluctuation of resistance value due to heat generated during operation. The inductance is influenced by the fluctuation due to the manufacturing dispersion and at a low speed where the change of the current is severe. In order to find stator resistance and inductance which have different initial values and fluctuate during operation and have a large influence on sensorless performance at low speed, they are commonly measured through 2-point calculation method by 2-step align current injection. The effect of voltage error is minimized by offsetting the voltage error. In addition, when the command voltage is used, it is difficult to estimate the back-emf due to the relatively large distortion voltage due to the dead time and the voltage drop of the power device. In this paper, we propose a simple circuit and method to detect the voltage by measuring the PWM(Pulse Width Modulation) pulse width and compensate the voltage drop of the power device with the table, thereby minimizing the position error due to the exact estimation of the back-emf at low speed. The suitability of the proposed algorithm is verified through experiment.

수동루프에 의한 송전선로 상불평형 발생에 관한 연구 (A Study on Three-phase Imbalance of a Power Transmission Line due to Installation of a Passive Loop Conductor)

  • 김종형;신명철;최상열
    • 조명전기설비학회논문지
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    • 제17권6호
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    • pp.31-38
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    • 2003
  • 가공송전선로주변 자계저감 기법 중에서 수동루프 방식은 기존 송전철탑에 적은 비용으로 용이하게 적용되어 만족할 만한 저감효과를 제공할 수 있지만 수동루프에 유도되는 전류에 의해 송전손실이 증가될 뿐 아니라 송전선로의 기하학적 비대칭성이 증가됨으로써 상불평형이 증가하게된다. 따라서 본 논문에서는 수동루프 설치에 따른 송전손실과 송전선로 수전단에서의 상불평형을 모의하고자한다. 345[kV]급 수평 상배치 1회선 가공송전선로를 선정하여 수동루프를 송전선로의 선로정수에 포함시킨 비대칭 3상 분포정수 모델로 표현하였으며 이것에 대한 미분방정식을 정의하고 해를 구함으로써 수전단 3상의 전압과 전류를 계산했다. 그 결과로부터 각 상에 따라 전력손실이 다르게 발생하며 수전단에서 정상분이 감소하는 대신에 역상분이 증가함을 확인하였다. 일반적으로 수동루프에 의한 상불평형이 차지하는 비중이 크지는 않지만 수동루프 설치구간과 유도전류의 크기 등에 비례하여 증가하므로 수동루프 도입에 따른 소요비용을 산출하는 과정에서 그에 따른 영향을 포함시켜야 할 것으로 판단된다.

BES를 이용한 연동형 온실의 냉·난방 부하 산정 및 PV 시스템 발전 성능 분석 (Estimation on Heating and Cooling Loads for a Multi-Span Greenhouse and Performance Analysis of PV System using Building Energy Simulation)

  • 이민형;이인복;하태환;김락우;여욱현;이상연;박관용;김준규
    • 생물환경조절학회지
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    • 제26권4호
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    • pp.258-267
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    • 2017
  • The price competitiveness of photovoltaic system (PV system) has risen recently due to the growth of industries, however, it is rarely applied to the greenhouse compared to other renewable energy. In order to evaluate the application of PV system in the greenhouse, power generation and optimal installation area of PV panels should be analyzed. For this purpose, the prediction of the heating and cooling loads of the greenhouse is necessary at first. Therefore, periodic and maximum energy loads of a multi-span greenhouse were estimated using Building Energy Simulation(BES) and optimal installation area of PV panels was derived in this study. 5 parameter equivalent circuit model was applied to analyzed power generation of PV system under different installation angle and the optimal installation condition of the PV system was derived. As a result of the energy simulation, the average cooling load and heating load of the greenhouse were 627,516MJ and 1,652,050MJ respectively when the ventilation rate was $60AE{\cdot}hr^{-1}$. The highest electric power production of the PV system was generated when the installation angle was set to $30^{\circ}$. Also, adjustable PV system produced about 6% more electric power than the fixed PV system. Optimal installation area of the PV panels was derived with consideration of the estimated energy loads. As a result, optimal installation area of PV panels for fixed PV system and adjustable PV system were $521m^2$ and $494m^2$ respectively.

Dynamic of heat production partitioning in rooster by indirect calorimetry

  • Rony Lizana, Riveros;Rosiane, de Sousa Camargos;Marcos, Macari;Matheus, de Paula Reis;Bruno Balbino, Leme;Nilva Kazue, Sakomura
    • Animal Bioscience
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    • 제36권1호
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    • pp.75-83
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    • 2023
  • Objective: The objective of this study was to describe a methodological procedure to quantify the heat production (HP) partitioning in basal metabolism or fasting heat production (FHP), heat production due to physical activity (HPA), and the thermic effect of feeding (TEF) in roosters. Methods: Eighteen 54-wk-old Hy Line Brown roosters (2.916±0.15 kg) were allocated in an open-circuit chamber of respirometry for O2 consumption (VO2), CO2 production (VCO2), and physical activity (PA) measurements, under environmental comfort conditions, following the protocol: adaptation (3 d), ad libitum feeding (1 d), and fasting conditions (1 d). The Brouwer equation was used to calculate the HP from VO2 and VCO2. The plateau-FHP (parameter L) was estimated through the broken line model: HP = U×(R-t)×I+L; I = 1 if t<R or I = 0 if t>R; Where the broken-point (R) was assigned as the time (t) that defined the difference between a short and long fasting period, I is conditional, and U is the decreasing rate after the feed was withdrawn. The HP components description was characterized by three events: ad libitum feeding and short and long fasting periods. Linear regression was adjusted between physical activity (PA) and HP to determine the HPA and to estimate the standardized FHP (st-FHP) as the intercept of PA = 0. Results: The time when plateau-FHP was reached at 11.7 h after withdrawal feed, with a mean value of 386 kJ/kg0.75/d, differing in 32 kJ from st-FHP (354 kJ/kg0.75/d). The slope of HP per unit of PA was 4.52 kJ/mV. The total HP in roosters partitioned into the st-FHP, termal effect of feeding (TEF), and HPA was 56.6%, 25.7%, and 17.7%, respectively. Conclusion: The FHP represents the largest fraction of energy expenditure in roosters, followed by the TEF. Furthermore, the PA increased the variation of HP measurements.