• Title/Summary/Keyword: Active/sleep cycle

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Physiology of sleep (수면의 생리)

  • Chae, Kyu Young
    • Clinical and Experimental Pediatrics
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    • v.50 no.8
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    • pp.711-717
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    • 2007
  • Sleep is a vital, highly organized process regulated by complex systems of neuronal networks and neurotransmitters. Normal sleep comprises non-rapid eye movement (NREM) and REM periods that alternate through the night. Sleep usually begins in NREM and progresses through deeper NREM stages (2, 3, and 4 stages), but newborns enter REM sleep (active sleep) first before NREM (quiet sleep). A period of NREM and REM sleep cycle is approximately 90 minutes, but newborn have a shorter sleep cycle (50 minutes). As children mature, sleep changes as an adult pattern: shorter sleep duration, longer sleep cycles and less daytime sleep. REM sleep is approximately 50% of total sleep in newborn and dramatically decreases over the first 2 years into adulthood (20% to 25%). An initial predominant of slow wave sleep (stage 3 and 4) that peaks in early childhood, drops off abruptly after adolescence by 40% from preteen years, and then declines over the life span. The hypothalamus is recognized as a key area of brain involved in regulation of sleep and wakefulness. The basic function of sleep largely remains elusive, but it is clear that sleep plays an important role in the regulation of CNS and body physiologic processes. Understanding of the architecture of sleep and basic mechanisms that regulate sleep and wake cycle are essential to evaluate normal or abnormal development of sleep pattern changes with age. Reduction or disruption of sleep can have a significant impact on daytime functioning and development, including learning, growth, behavior, and emotional regulation.

Smart Parking Guidance System based on IoT Car-stoppers (IoT 카스토퍼 기반 스마트 주차안내 시스템)

  • Shim, Dongha;Yang, Ji-Hoon;Son, Jeungki;Han, Seung-Han;Lee, Hyounmin
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.17 no.3
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    • pp.137-143
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    • 2017
  • This paper presents a smart parking guidance system based on IoT car-stoppers. The car-stopper embedding an IoT sensor module has the advantage of easy installation compared to conventional parking sensors buried in ground. The parking status data are transferred to the IoT gateway by the sequential point-to-point communication between the car-stoppers. The data transferred from the IoT gateway are stored in the web server, and parking spaces can be monitored remotely through the Android app in a smart device. An active/sleep cycle method using a watch dog timer is employed to reduce the power consumption of the battery powered car-stopper. The power consumption of the car-stopper is measured to be 80 and 25 mW at the active and sleep mode, respectively. A configuration of ultra-low-power IoT sensor module is proposed to minimize the power consumption in the sleep mode. The operation of the implemented system has been verified in a real-world parking lot.

Design of a 25 mW 16 frame/s 10-bit Low Power CMOS Image Sensor for Mobile Appliances

  • Kim, Dae-Yun;Song, Min-Kyu
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.11 no.2
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    • pp.104-110
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    • 2011
  • A CMOS Image Sensor (CIS) mounted on mobile appliances requires low power consumption due to limitations of the battery life cycle. In order to reduce the power consumption of CIS, we propose novel power reduction techniques such as a data flip-flop circuit with leakage current elimination and a low power single slope analog-to-digital (A/D) converter with a sleep-mode comparator. Based on 0.13 ${\mu}m$ CMOS process, the chip satisfies QVGA resolution (320 ${\times}$ 240 pixels) that the cell pitch is 2.25 um and the structure is a 4-Tr active pixel sensor. From the experimental results, the performance of the CIS has a 10-b resolution, the operating speed of the CIS is 16 frame/s, and the power dissipation is 25 mW at a 3.3 V(analog)/1.8 V(digital) power supply. When we compare the proposed CIS with conventional ones, the power consumption was reduced by approximately 22% in the sleep mode, and 20% in the active mode.

Analysis of the S-MAC/T-MAC Protocol for Wireless Sensor Networks (무선 센서망의 에너지 효율적 MAC(S-MAC/T-MAC) 성능 분석)

  • Lee Woo-Chul;Lee Yoo-Tae;Kim Dong-Il
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2006.05a
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    • pp.99-103
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    • 2006
  • In this paper, we focus on the problem of designing an energy efficient MAC protocol for wireless sensor networks and analyze S(Sensor)-MAC and T(Time-out)-MAC. S-MAC is based on the concept of the 'listen/sleep mode cycle'. This applies message passing to reduce contention latency for sensor-network applications that require store-and-forward processing as data moves through the network. However unlike the S-MAC, where the duration of the cycle is fixed, T-MAC introduces an adaptive duty cycle in a novel way: by dynamical ending the active part of it. This reduces the amount of energy wasted on idle listening, in which nodes wait for potentially incoming messages while still maintaining a reasonable throughput. In this paper we discuss the design of these two Protocols. We analyze them from the aspect of latency, throughput, and power savings when using the OMNeT++ simulator in various environments.

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Ultra-Power-Saving 2 Ports PLC Wall Switch Development (초절전형 PLC 2구 스위치 개발)

  • Han, Jae-Yong;Lee, Sun-Heum
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.44 no.11
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    • pp.51-55
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    • 2007
  • Generally, PLC (Power Line Communication) based home automation devices such as wall switch, walt socket, gas controller, etc, must maintain wake-up status at all time to control other electronic devices and monitor their on/off status whether they are in service or not. In order to reduce the unnecessary energy consumption during the standby mode, the new power-saving PLC 2 ports wall switch has been developed, separating PLC communication part and controller part and introducing sleep mode. In addition, to expand life cycle of PLC product and to reduce the rate of product failure in active mode, the instant controlling method in controlling process is adopted instead of the maintenance controlling method. In comparison to the earlier model, the new 2 ports PLC wall switch has reduced power by 0.95[W] less in standby mode and 3.2[W] less in active mode than the previous one.

Relationship between Menstruation Distress and Coping Method among 3-shift Hospital Nurses (교대근무 간호사의 월경불편감과 대처방법과의 관계)

  • Jo, Young-Wha;Jang, Keong-Sook;Park, Seon-Hwa;Yun, Hee-Kyung;Noh, Kwang-Seon;Kim, Sung-Pyo;Lee, Sun-A;Ahn, Suk-Hee
    • Women's Health Nursing
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    • v.18 no.3
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    • pp.170-179
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    • 2012
  • Purpose: The purpose of this study was to identify menstrual distress, coping method and relief of symptoms among female nurses who worked with 3-shift. Methods: A total of 185 participants were recruited from November 18, 2011 to January 30, 2012. The measurement included menstrual distress and coping method questionnaire and relief of symptoms. The data were analyzed using t-test, ANOVA, Pearson's correlation coefficients with SPSS 19.0 Results: The level of menstrual distress was moderate (mean 3.0), and there were significant differences in menstrual distress by age, education, stress, regularity of menstrual cycle. Among the coping methods, coping according to menstrual cycle specific was the most frequently used, followed by active recognizing coping, active behavioral coping, and avoidance coping. Among the degree of symptom relief, symptom relief score was the highest when used coping according to menstrual cycle specific. Menstrual distress was associated with stress, adequate amount of sleep, dysmenorrhea and number of coping method total. Conclusion: Nurses experienced moderate levels of menstrual distress and used various types of coping to relieve it. There is a need for hospital nurses to develop an effective nursing intervention to relieve the menstrual distress and utilize active coping methods.

A Period Adaptive Wakeup Technique based on Receive Prediction for WSN (무선 센서 네트워크를 위한 수신 예측 기반 주기 적응적 웨이크업 기법)

  • Lee, Kyung-Hoon;Lee, Hak-Jai;Kim, Young-Min
    • The Journal of the Korea institute of electronic communication sciences
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    • v.10 no.11
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    • pp.1265-1270
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    • 2015
  • For the sensor node or collection node operating with a battery in a wireless sensor network, MAC protocols with improved energy efficiency are important performance factors. In this paper, in order to improve the restrictive capability in accordance with the fixed activity period of the duty cycle technology in the MAC protocol for wireless sensor networks, we propose a periodic adaptive wakeup technique based on receive prediction. The proposed technique is through a performance evaluation using the CC2500 RF transceiver and C8051F330 microcontroller based wireless node, to analyze the minimum active period. As a result, it was confirmed that it is possible to improve energy efficiency by adaptively changing the sleep period in accordance with the change of period.

Adaptive Mobile Sink Path Based Energy Efficient Routing Protocol for Wireless Sensor Network (무선 센서 네트워크에서 에너지 효율을 고려한 모바일 sink의 적응적 경로설정 방법)

  • Kim, Hyun-Duk;Yoon, Yeo-Woong;Choi, Won-Ik
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.36 no.12A
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    • pp.994-1005
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    • 2011
  • In this paper, we propose a novel approach to optimize the movement of mobile sink node, called AMSP(Adaptive Mobile Sink Path) for mobile sensor network environments. Currently available studies usually suffer from unnecessary data transmission resulting from random way point approach. To address the problem, we propose a method which uses the Hilbert curve to create a path. The proposed method guarantees shorten transmission distance between the sink node and each sensor node by assigning orders of the curve according to sensor node density. Furthermore, The schedule of the sink node is informed to all of the sensing nodes so that the Duty Cycle helps the network be more energy efficient. In our experiments, the proposed method outperforms the existing works such as TTDD and CBPER by up to 80% in energy consumption.

A MAC Protocol Based on Adaptive Timeout for Energy Efficient Wireless Sensor Networks (에너지 효율적인 무선 센서 네트워크를 위한 적응형 Timeout 기반 MAC 프로토콜)

  • Kwon, Yong-Hun;Kong, In-Yeup
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2010.05a
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    • pp.890-893
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    • 2010
  • In wireless sensor networks, each node generally uses a battery because it is hard to replace or charge. For this reason, study for life time prolongation of each node within the limited energy source has become an important issue. So many ways are suggested to minimize the energy consumption for each node, especially energy efficient MAC protocols have been studied actively. T-MAC of contention based MAC protocol is that added the adaptability on fixed duty cycle of S-MAC. T-MAC allocates the fixed timeout before each node goes to sleep mode from active mode. If no data exchanged in a timeout, each node goes to sleep mode. Because of the timeout is always fixed, the absence of data exchange in a timeout will cause unnecessary energy consumption. In this paper, in order to improve the energy efficiency, we propose a MAC protocol based on adaptive timeout that analyze the probability of the timeout, and provides the modified timeout.

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Design of a CMOS Image Sensor Based on a Low Power Single-Slope ADC (저전력 Single-Slope ADC를 사용한 CMOS 이미지 센서의 설계)

  • Kwon, Hyuk-Bin;Kim, Dae-Yun;Song, Min-Kyu
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.48 no.2
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    • pp.20-27
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    • 2011
  • A CMOS Image Sensor(CIS) mounted on mobile appliances always needs a low power consumption because of the battery life cycle. In this paper, we propose novel power reduction techniques such as a data flip-flop circuit with leakage current elimination, a low power single slope A/D converter with a novel comparator, and etc. Based on 0.13um CMOS process, the chip satisfies QVGA resolution($320{\times}240$ pixels) whose pitch is 2.25um and whose structure is 4-Tr active pixel sensor. From the experimental results, the ADC in the middle of CIS has a 10-b resolution, the operating speed of CIS is 16 frame/s, and the power dissipation is 25mW at 3.3V(Analog)/1.8V(Digital) power supply. When we compare the proposed CIS with conventional ones, the power consumption is reduced approximately by 22% in sleep mode, 20% in operating mode.