• Title/Summary/Keyword: Wake-up radio

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Regionalized TSCH Slotframe-Based Aerial Data Collection Using Wake-Up Radio (Wake-Up Radio를 활용한 지역화 TSCH 슬롯프레임 기반 항공 데이터 수집 연구)

  • Kwon, Jung-Hyok;Choi, Hyo Hyun;Kim, Eui-Jik
    • Journal of Internet of Things and Convergence
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    • v.8 no.2
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    • pp.1-6
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    • 2022
  • This paper presents a regionalized time slotted channel hopping (TSCH) slotframe-based aerial data collection using wake-up radio. The proposed scheme aims to minimize the delay and energy consumption when an unmanned aerial vehicle (UAV) collects data from sensor devices in the large-scale service area. To this end, the proposed scheme divides the service area into multiple regions, and determines the TSCH slotframe length for each region according to the number of cells required by sensor devices in each region. Then, it allocates the cells dedicated for data transmission to the TSCH slotframe using the ID of each sensor device. For energy-efficient data collection, the sensor devices use a wake-up radio. Specifically, the sensor devices use a wake-up radio to activate a network interface only in the cells allocated for beacon reception and data transmission. The simulation results showed that the proposed scheme exhibited better performance in terms of delay and energy consumption compared to the existing scheme.

The effects of Wake-up Radio in WLAN V2P Communication (무선 랜 기반 V2X 통신에서의 보조 수신기를 활용한 동작에 따른 영향)

  • Hong, Hanseul;Kim, Ronny Yongho
    • Journal of Advanced Navigation Technology
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    • v.22 no.4
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    • pp.302-310
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    • 2018
  • To realize the self-driving technology, there have been various system designs based on the related V2X standards, especially the IEEE 802.11p and WAVE standard supporting the WLAN V2X communication. On the other hand, the new standard IEEE 802.11ba defining supplementary wake-up radio operation is now under standardization targeting the low power operation, and it includes the V2P operation in use cases. However, if IEEE 802.11ba is used with the IEEE 802.11ba for V2X operation, the additional transmission procedure of wake-up frame in IEEE 802.11ba may cause the congestion problem and fails to meet the delay requirement. In this paper, the system structure of the combination of IEEE 802.11ba with the 802.11p is studied. In addition, based on the analysis and simulation, the considerations and improvements for effective low-power V2P communication in future self-driving technology using IEEE 802.11ba are proposed.

무선센서노드를 위한 CMOS ULP Radio 회로 설계 기술 동향

  • Kim, Hyeon;Sin, Hyeon-Cheol
    • Information and Communications Magazine
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    • v.28 no.11
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    • pp.49-55
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    • 2011
  • 무선센서네트워크를 위한 무선센서노드는 한정된 전력원을 이용하여 수천에서 수만시간의 동작을 가능하게 해야하므로 초저전력 (Ultra Low Power: ULP) 소모가 매우 중요한 설계 요구조건이 된다. 이를 위해 센서노드의 동작 주기(Duty Cycling)를 제어하는 기법이 전체 전력소모를 줄이는 매우 중요한 기술로 사용되고 있다. 회로의 전력 소모 감소를 위한 몇 가지 중요한 기술에는 회로적으로는 전류 재사용기술과 송수선기 구조로는 Super-regenerative 구조와 On-Off Keying 송수신기 구조가 있다. 또한 ULP Radio가 휴면모드에도 Wake-up을 가능하게 하기 위해서는 초저전력 클락 발생기 회로가 1${\mu}W$이하의 전력소모로 구현할 수 있어야 한다. 이러한 사항들을 적절히 고려함으로써 초저전력 CMOS Radio를 구현할 수 있다.

Ultra-Low Power MICS RF Transceiver Design for Wireless Sensor Network (WSN 을 위한 초저전력 MICS RF 송수신기 기술 개요 및 설계 기법)

  • Gyu-won Kim;Yu-jung Kim;Junghwan Han
    • Transactions on Semiconductor Engineering
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    • v.2 no.1
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    • pp.9-16
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    • 2024
  • This paper discusses the design of bio-implanted ultra-low-power MICS RF transceivers for wireless sensor networks. The 400 MHz MICS standard was considered for the implementation of the WBAN wireless sensor system, indirectly minimizing radio propagation losses in the human body and the inference with surrounding networks. This paper includes link budget, various transmission and reception architectures for a system design and ultra-low power transceiver circuit techniques for the implementation of RF transceivers that meet MICS standards.

Clock Synchronization for Periodic Wakeup in Wireless Sensor Networks (무선 센서 망에서 주기적인 송수신 모듈 활성화를 위한 클락 동기)

  • Kim, Seung-Mok;Park, Tae-Keun
    • Journal of Korea Multimedia Society
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    • v.10 no.3
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    • pp.348-357
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    • 2007
  • One of the major issues in recent researches on wireless sensor networks is to reduce energy consumption of sensor nodes operating with limited battery power, in order to lengthen their lifespan. Among the researches, we are interested in the schemes in which a sensor node periodically turns on and off its radio and requires information on the time when its neighbors will wake up (or turn on). Clock synchronization is essential for wakeup scheduling in such schemes. This paper proposes three methods based on the asynchronous averaging algorithm for clock synchronization in sensor nodes which periodically wake up: (1) a fast clock synchronization method during an initial network construction period, (2) a periodic clock synchronization method for saving energy consumption, and (3) a decision method for switching the operation mode of sensor nodes between the two clock synchronization methods. Through simulation, we analyze maximum clock difference and the number of messages required for clock synchronization.

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An Evaluation of Data Delivery Mechanisms in Clustered Sensor Networks (클러스터 기반 센서 망에서 데이터 전달 방법들의 성능 분석)

  • Park Tae-Keun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.3A
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    • pp.304-310
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    • 2006
  • This paper evaluates the performance of three types of data delivery mechanisms in clustered sensor networks, as a basic research to develop an energy efficient topology management scheme. In the first mechanism, one node per cluster(clusterhead) turns on its radio(or wakes up) to transmit and receive RTS/CTS/DATA/ACK messages, but in the second one, k nodes per cluster wake up and participate in the message exchange. In the last mechanism, clusterheads turn on the radio to exchange RTS/CTS messages, and if a clusterhead receives RTS containing its cluster m as a destination, it makes k nodes in the cluster hun on the radio to receive DATA and transmit ACK. Through simulation, we show the energy consumption of the three types of data delivery mechanisms as functions of the number of active nodes per cluster, offered load, and packet loss probability.

A Solar Stationary Type IV Radio Burst and Its Radiation Mechanism

  • Liu, Hongyu;Chen, Yao;Cho, Kyungsuk;Feng, Shiwei;Vasanth, Veluchamy;Koval, Artem;Du, Guohui;Wu, Zhao;Li, Chuanyang
    • The Bulletin of The Korean Astronomical Society
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    • v.43 no.1
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    • pp.52.2-53
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    • 2018
  • A stationary Type IV (IVs) radio burst was observed on September 24, 2011. Observations from the Nançay RadioHeliograph (NRH) show that the brightness temperature (TB ) of this burst is extremely high, over 10^11K at 150 MHz and over 10^8K in general. The degree of circular polarization (q ) is between -60%~-100%, which means that it is highly left-handed circularly polarized. The flux-frequency spectrum follows a power-law distribution, and the spectral index is considered to be roughly -3~-4 throughout the IVs. Radio sources of this event are located in the wake of the coronal mass ejection and are spatially dispersed. They line up to present a formation in which lower-frequency sources are higher. Based on these observations, it is suggested that the IVs was generated through electron cyclotron maser emission.

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A Sub-${\mu}$W 22-kHz CMOS Oscillator for Ultra Low Power Radio (극저전력 무선통신을 위한 Sub-${\mu}$W 22-kHz CMOS 발진기)

  • Na, Young-Ho;Kim, Jong-Sik;Kim, Hyun;Shin, Hyun-Chol
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.47 no.12
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    • pp.68-74
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    • 2010
  • A sub-${\mu}$W CMOS Wien-Bridge oscillator for ultra low power (ULP) radio applications is presented. The Wien-Bridge oscillator is based on an non-inverting opamp amplifier with a closed-loop gain $1+R_2/R_1$ as a means of providing necessary loop gain. An additional RC network provides appropriate phase shift for satisfying the Barkhausen oscillation condition at the given frequency of 1/($2{\pi}RC$). In this design, we propose a novel loop gain control method based on a variable capacitor network instead of a rather conventional variable resistor network. Implemented in $0.18{\mu}m$ CMOS, the oscillator consumes only 560 nA at the oscillation frequency of 22 kHz.