• Title/Summary/Keyword: Drive-in

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Relationship between Drinking Behavior and Drinking Drive among Koreans (음주행태와 음주운전에 관한 관련성 분석)

  • Park Young-Mi;Kim Kwang-Kee;Kim Hyeon-Suk
    • Korean Journal of Health Education and Promotion
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    • v.23 no.1
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    • pp.45-61
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    • 2006
  • Objective: Drinking drive is a nationally recognized social problem. This research aimed to describe the relationship between drinking behavior and drinking drive based on the social demographic characteristics. Methods: This paper used secondary data for analyses which was derived from the national representative samples of adults; National Health and Nutrition Surveys by Korea Institute for Health and Social Affairs in 1998 and 2001. For data analyses, univariate analysis, Chi-square test and logistic regression analysis were adopted for the samples of male adults who were driving and 20 years old and more. Results: The prevalence of drinking drive varied significantly among socio-demographic characteristics. The year prevalence rates of drinking drive were 29.1% in 1998 and 16.4% in 2001. In the rates of drinking drive, males were higher than those of females in both years. By age, twenties to thirties showed the highest ratio of drinking drive(odd ratio=18.8), compared with the sixties. Related to the occupation, the persons who were engaging in farming and fishery showed the highest ratio(odd ratio=3.73) of drinking drive in comparison to the unemployed. Conclusions: People who drink alcohol frequently tended to have more experiences of drinking drive. In addition, the drivers who drink more amount of alcohol drinking were significantly associated with higher rates of drinking drive, as well. Strategy based on the socio-demographic characteristics may provide a promising prevention of reducing drinking drive. Community-based efforts, education, self-awareness and public-awareness to address drinking and drinking drive problems are effective in reducing drinking drive. Enacting comprehensive regulations which control drinking drive can reduce both alcohol use and drinking drive.

Double DOF control of an electromechanical integrated toroidal drive

  • Xu, Lizhong;Liu, Xin
    • Smart Structures and Systems
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    • v.3 no.1
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    • pp.115-131
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    • 2007
  • The electromechanical integrated toroidal drive is a new drive system. For the control of the drive, the torque fluctuation and the steady-state errors should be removed and the fast response to the input change should be achieved. In this paper, the torque fluctuation of the drive system is analyzed and expressed as Fourier series forms. The transfer function of the torque control for the drive system is derived from its electromechanical coupled dynamic equations. A 2-DOF control method is used to control the drive system. Using definite parameter relationship of the 2-DOF control system, the steady errors of the torque control for the drive system is removed. Influences of the drive parameters on the control system are investigated. Using proper drive parameters, the response time of the control system is reduced and the quick torque response of the drive system is realized. Using a compensated input voltage, the torque fluctuation of the drive system is removed as well. The compensated input voltage can be obtained from the torque fluctuation equation and the transfer function. These research results are useful for designing control system of the new drive.

The Method of safe double holding by detecting movements of Control Rod Drive Mechanism (원자로 제어봉구동장치의 동작 검출을 통한 안전한 이중유지 방법)

  • Cheon, Jong-Min;Kinm, Choon-Kyung;Lee, Jong-Moo;Park, Min-Kook;Kwon, Soon-Man
    • Proceedings of the KIEE Conference
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    • 2005.07d
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    • pp.2655-2657
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    • 2005
  • When a fault relating to the urgent alarm occurs, we must prevent control rods from dropping and make one of two grippers in Control Rod Drive Mechanism (CRDM) grip the drive rod taking a control rod assembly. To enhance the reliability of holding control rods, we order two grippers to hold the drive rod. This action is called the double holding. In the middle of the movement of the drive rod, the latching of the drive rod can cause friction between a gripper and the drive rod. This state may give damage to both the gripper and the drive rod. In this paper, we have devised the method which can have two grippers hold the drive rod more stably, without damaging the equipment.

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Stable Control-rod Double Hold Method of Control Rod Drive Mechanism (원자로 제어봉구동장치의 안정적 제어봉 이중 유지 방법)

  • Cheon, Jong-Min;Kim, Choon-Kyung;Lee, Jong-Moo;Jung, Soon-Hyun;Kim, Seog-Ju;Kwon, Soon-Man
    • Proceedings of the KIEE Conference
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    • 2003.11c
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    • pp.555-558
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    • 2003
  • When a fault relating to the urgent alarm occurs, we must prevent control rods from dropping and make one of two grippers in Control Rod Drive Mechanism (CRDM) grip the drive rod laking a control rod assembly. If a gripper with any problem is ordered to grip the drive rod, the gripper which cannot latch the rod stably will fail to take the rod. On the purpose of escaping this bad case, we order two grippers to hold the drive rod and enhance the reliability of holding control rods. This action is called the double hold. In the middle of the movement of the drive rod, the latching of the drive rod can cause friction between a gripper and the drive rod. This state may give damage to both the gripper and the drive rod. In this paper, we have devised the method which can have two grippers hold the drive rod more stably, without damaging the equipment.

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A Study on Characteristics Related to Adolescents Runaway drive: Focusing on Personal, Familial, School and Peer Variables (청소년의 가출충동과 관련된 특성 연구: 개인.가족.학교환경.또래관계를 중심으로)

  • 배문조;전귀연
    • Journal of the Korean Home Economics Association
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    • v.40 no.1
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    • pp.23-35
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    • 2002
  • The purpose of this study was to examine the personal, familial, school and peer characteristics related to adolescents' runaway drive. The 259 subjects were selected from high school student in the city of Daegu. The major findings of study were as follows: 1. In respect of personal characteristics, the more runaway drive was, the lower self-esteem was and the higher anxiety, depression, and impulsive mind was. 2. In respect of familial characteristics, the more runway drive was, the lower family cohesion and family adaptation was and the higher the degree of parents' rejection was. And the higher runway drive was, the higher degree of child abuse and interparental conflict. 3. In respect of school characteristics, the more runway drive was, the lower school adaptation was. 4. In respect of peer characteristics, the more runway drive was, the higher degree of delinquency of peer.

The Effect of Types of Initial Drive-in Steps on Technical Factors in Basketball

  • Park, Sangheon;Yoon, Sukhoon
    • Korean Journal of Applied Biomechanics
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    • v.28 no.3
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    • pp.181-185
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    • 2018
  • Objective: The purpose of this study was to investigate the effect of types of drive-in initial steps in basketball on technical factors, to provide basic information for the enhancement of basketball skill. Method: Ten men (age: $24.70{\pm}2.26years$; height: $181.00{\pm}5.72cm$; weight: $75.70{\pm}8.23kg$; career length: $10.00{\pm}3.59years$), each with a career length of over five years and no history of injury to the lower extremities within the prior six months, participated in this study. They were asked to perform four types of drive-in movements at $35{\sim}60^{\circ}$, wearing their own shoes, after running from a start line 5 m away and catching a basketball passed by an expert passer. The drive-in movements were measured by eight infrared cameras (Oqus 300, Qualisys, Sweden). Collected raw data were used to calculate total initial step time, displacement, velocity, center of mass (COM) height, and COM velocity. Results: Total initial step displacement and velocity of cross drive-ins (JC, SC) were greater than that of direct drive-ins (JD, SD; p < .05). COM velocity of cross drive-ins (JC, SC) was also greater than that of direct drive-ins (JD, SD; p < .05). Conclusion: Our results indicated that cross drive-ins, regardless of stop step type, are more effective than direct drive-ins. This is because cross drive-ins are technically bold due to less influence from walking violations and double dribble rules in basketball. However, using one-sided movement is too difficult to play in competitive game; therefore, basketball players should develop the ability to choose appropriate movement frequency.

A New GTO Driving Technique for Faster Switching (고속 스윗징을 위한 새로운 GTO 구동기법)

  • Kim, Young-Seok;Seo, Beom-Seok;Hyun, Dong-Seok
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.43 no.2
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    • pp.244-250
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    • 1994
  • This paper presents the design of a new turn-off gate drive circuit for GTO which can accomplish faster turn-off switching. The major disadvantage of the conventional turn-off gate drive technique is that it has a difficulty in realizing high negative diS1GQT/dt because of VS1RGM(maximum reverse gate voltage) and stray inductances of turn-off gate drive circuit[1~2]. The new trun-off gate drive technique can overcome this problem by adding another turn-off gate drive circuit to the conventional turn-off gate drive circuit. Simulation and experimental results of the new turn-off gate drive circuit in conjunction with chopper circuit verify a faster turn-off switching performance.

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Investigation of Structural Safety of Monobloc Tubular Drive Shaft Subjected to Torque (비틀림 모멘트가 부가되는 일체형 중공 드라이브 샤프트의 구조 안정성 분석)

  • Guk, Dae-Sun;Ahn, Dong-Gyu;Lee, Ho-Jin;Jung, Jong-Hoon
    • Journal of the Korean Society for Precision Engineering
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    • v.32 no.12
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    • pp.1073-1080
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    • 2015
  • A drive shaft is used to transmit torque and rotation through the connection of components of a drive train. Recently, a monobloc drive shaft without welding regions is developed to improve the safety of the drive shaft. The drive shaft bears the shear stress induced by torque. The objective of this paper is to investigate into the structural safety of a monobloc tubular drive shaft subjected to torque. Elasto-plastic finite element (FE) analysis is performed to estimate the deformation behavior of the drive shaft and stress-strain distribution in the drive shaft. Several techniques are used to create finite element (FE) model of the monobloc tubular drive shaft subjected to torque. Through the comparison of the results of FE analyses with those of experiments from the viewpoint of rotational angle, appropriate correction coefficients for different load conditions are estimated. The safety of the tubular drive shaft is examined using the results of FE analyses for different load conditions. Finally, it is noted that the designed tubular drive shaft has a sufficient structural safety.

Development of traction drives for electric machine (전동머신을 위한 마찰 드라이브 개발)

  • 노수영;김배진;오세훈;전한수;김진남
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.101-105
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    • 2004
  • The traction drive have a high power transmission efficiency and small size, a light weight, a low noise. So it is expected that alternative drive part of engine. Because it is necessary stillness that essential condition of drive part used moving tool in a room, it has many-sided in field of application. This traction drive is better suitable than other speed reducer as drive part of electric wheelchair. Also it is sufficiently necessary capacity of existing advanced product as apply traction drive to electric wheelchair.

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A study on the Analysis of Drive Efficiency by Drawbar Pull Test in the Wheeled Vehicle (경인력시험을 통한 차륜차량의 구동효율에 관한 연구)

  • 양성모;강윤수
    • Journal of the korean Society of Automotive Engineers
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    • v.9 no.2
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    • pp.34-46
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    • 1987
  • The drive efficiency is investigated with drawbar pull test to provide the basic data in the gradability and acceleration of the wheeled vehicle. As a result, the drive efficiencies are determined from 4*2 drive : Direct gear 0.89 1st gear 0.81 Other gears 0.83-0.87 4*4 high drive : Direct gear 0.85 1st gear 0.77 Other gears 0.79-0.83 4*4 low drive : Direct gear 0.83 1st gear 0.75 Other gears 0.77-0.81

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