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Self-Organization of Multi-UAVs for Improving QoE in Unequal User Distribution
Young Jeon,Wonseok Lee,Tran Manh Hoang,Taejoon Kim 한국인터넷정보학회 2022 KSII Transactions on Internet and Information Syst Vol.16 No.4
A self-organizing multiple unmanned aerial vehicles (multi-UAVs) deployment based on virtual forces has a difficulty in ensuring the quality-of-experience (QoE) of users because of the difference between the assumed center for users in a hotspot and an actual center for users in the hotspot. This discrepancy is aggravated in a non-uniform and mobile user distribution. To address this problem, we propose a new density based virtual force (D-VF) multi-UAVs deployment algorithm which employs a mean opinion score (MOS) as a metric of QoE. Because MOS is based on signal-to-noise ratio (SNR), a sum of users’ MOS is a good metric not only to secure a wide service area but to enhance the link quality between multi-UAVs and users. The proposed algorithm improves users’ QoE by combining virtual forces with a random search force for the exploration of finding multi-UAVs’ positions which maximize the sum of users’ MOS. In simulation results, the proposed deployment algorithm shows the convergence of the multi-UAVs into the position of maximizing MOS. Therefore, the proposed algorithm outperforms the conventional virtual force-based deployment scheme in terms of QoE for non-uniform user distribution scenarios.
Time Synchronization Robust to Topology Change Through Reference Node Re-Election
( Young Jeon ),( Taehong Kim ),( Taejoon Kim ),( Jaeseang Lee ),( Jae-hyun Ham ) 한국정보처리학회 2019 정보처리학회논문지. 컴퓨터 및 통신시스템 Vol.8 No.8
애드혹 네트워크에서는 하나의 기준노드를 선정하여 이를 중심으로 네트워크 내에 모든 노드들의 시간을 동기화하는 방법을 사용할 수 있다. 이러한 기준노드를 중심으로 하는 대표적인 시간동기화 알고리즘은 Flooding Time Synchronization Protocol (FTSP) 이다. 메시지를 주고 받는 과정에서 예측할 수 있는 지연과 예측할 수 없는 랜덤 지연이 발생하게 되는데, 이러한 지연은 정확한 동기화를 방해하기 때문에 제거해야 한다. 멀티홉 기반의 통신에서 메시지를 주고받는 과정에 지나는 홉 수에 따라 홉 지연이 발생하게 된다. 이러한 홉 지연은 노드 사이의 동기화 성능을 크게 떨어뜨리게 된다. 따라서 이러한 홉 지연을 줄이고 동기화 성능을 높이기 위한 방법이 필요하다. 기존 FTSP 방식에서 기준노드가 ID를 기반으로 가장 ID 값이 작은 노드가 기준노드로 선정되기 때문에 기준노드의 위치가 어디냐에 따라서 홉 지연에 따른 성능 저하가 크게 발생할 수 있다. 본 논문에서는 홉 지연을 줄이기 위한 최적의 기준노드 재선정 알고리즘을 제안하고 OPNET 네트워크 시뮬레이터를 사용하여 기존 FTSP와의 성능을 비교한다. 추가적으로 토폴로지 변경에 따른 성능을 측정하여 제안된 방식이 토폴로지 변환에 강인한 성능을 갖고 있음을 확인할 수 있었다. In an Ad-hoc network, a method of time synchronizing all the nodes in a network centering on one reference node can be used. A representative algorithm based on a reference node is Flooding Time Synchronization Protocol (FTSP). In the process of sending and receiving messages, predictable and unpredictable delays occur, which should be removed because it hinders accurate time synchronization. In multi-hop communications, hop delays occur when a packet traverses a number of hops. These hop delays significantly degrade the synchronization performance among nodes. Therefore, we need to find a method to reduce these hop delays and increase synchronization performance. In the FTSP scheme, hop delays can be greatly increased depending on the position of a reference node. In addition, in FTSP, a node with the smallest node ID is elected as a reference node, hence, the position of a reference node is actually arbitrarily determined. In this paper, we propose an optimal reference node election algorithm to reduce hop delays, and compare the performance of the proposed scheme with FTSP using the network simulator OPNET. In addition, we verify that the proposed scheme has an improved synchronization performance, which is robust to topology changes.
An Orthogonally Polarized Negative Resonance CRLH Patch Antenna
Kahng, Sungtek,Jeon, Jinsu,Park, Taejoon The Korean Institute of Electrical Engineers 2015 Journal of Electrical Engineering & Technology Vol.10 No.1
A novel fully-printed microstrip antenna with negative first resonance and dual polarization is proposed. The radiator is printed on the 1-layer substrate instead of multilayers. The -1st resonance results from a composite right- and left-handed(CRLH) structure that has a circumferentially interlocked gap capacitively coupling a patch with a shorted-ring. This compact antenna is provided with a dual-polarization capability by creating two orthogonal linear polarizations in one body with coaxial feeds. The design is carried out by doing full-wave EM field simulation which is compared with the measurement of the fabricated antenna prototype. The measured results give the gain of 5 dBi and the efficiency of 78% at the -1st resonance mode as the center frequency of a downlink channel of the bandwidth over 20 MHz with 29 dB polarization isolation for mobile communication.
An Orthogonally Polarized Negative Resonance CRLH Patch Antenna
Sungtek Kahng,Jinsu Jeon,Taejoon Park 대한전기학회 2015 Journal of Electrical Engineering & Technology Vol.10 No.1
A novel fully-printed microstrip antenna with negative first resonance and dual polarization is proposed. The radiator is printed on the 1-layer substrate instead of multilayers. The -1st resonance results from a composite right- and left-handed(CRLH) structure that has a circumferentially interlocked gap capacitively coupling a patch with a shorted-ring. This compact antenna is provided with a dual-polarization capability by creating two orthogonal linear polarizations in one body with coaxial feeds. The design is carried out by doing full-wave EM field simulation which is compared with the measurement of the fabricated antenna prototype. The measured results give the gain of 5 dBi and the efficiency of 78% at the -1st resonance mode as the center frequency of a downlink channel of the bandwidth over 20 MHz with 29 dB polarization isolation for mobile communication.
Subcellular Neural Probes from Single-Crystal Gold Nanowires
Kang, Mijeong,Jung, Seungmoon,Zhang, Huanan,Kang, Taejoon,Kang, Hosuk,Yoo, Youngdong,Hong, Jin-Pyo,Ahn, Jae-Pyoung,Kwak, Juhyoun,Jeon, Daejong,Kotov, Nicholas A.,Kim, Bongsoo American Chemical Society 2014 ACS NANO Vol.8 No.8
<P/><P>Size reduction of neural electrodes is essential for improving the functionality of neuroprosthetic devices, developing potent therapies for neurological and neurodegenerative diseases, and long-term brain–computer interfaces. Typical neural electrodes are micromanufactured devices with dimensions ranging from tens to hundreds of micrometers. Their further miniaturization is necessary to reduce local tissue damage and chronic immunological reactions of the brain. Here we report the neural electrode with subcellular dimensions based on single-crystalline gold nanowires (NWs) with a diameter of ∼100 nm. Unique mechanical and electrical properties of defect-free gold NWs enabled their implantation and recording of single neuron-activities in a live mouse brain despite a ∼50× reduction of the size compared to the closest analogues. Reduction of electrode dimensions enabled recording of neural activity with improved spatial resolution and differentiation of brain activity in response to different social situations for mice. The successful localization of the epileptic seizure center was also achieved using a multielectrode probe as a demonstration of the diagnostics potential of NW electrodes. This study demonstrated the realism of single-neuron recording using subcellular-sized electrodes that may be considered a pivotal point for use in diverse studies of chronic brain diseases.</P>