IEICE Transactions on Communications
Online ISSN : 1745-1345
Print ISSN : 0916-8516
E102.B 巻, 6 号
選択された号の論文の17件中1~17を表示しています
Special Section on Healthcare, Medical Information and Communication Technology for Safe and Secure Society
  • Masaru SUGIMACHI
    2019 年 E102.B 巻 6 号 p. 1077
    発行日: 2019/06/01
    公開日: 2019/06/01
    ジャーナル フリー
  • Ryuji KOHNO, Takumi KOBAYASHI, Chika SUGIMOTO, Yukihiro KINJO, Matti H ...
    原稿種別: INVITED PAPER
    2019 年 E102.B 巻 6 号 p. 1078-1087
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/19
    ジャーナル フリー

    This paper provides perspectives for future medical healthcare social services and businesses that integrate advanced information and communication technology (ICT) and data science. First, we propose a universal medical healthcare platform that consists of wireless body area network (BAN), cloud network and edge computer, big data mining server and repository with machine learning. Technical aspects of the platform are discussed, including the requirements of reliability, safety and security, i.e., so-called dependability. In addition, novel technologies for satisfying the requirements are introduced. Then primary uses of the platform for personalized medicine and regulatory compliance, and its secondary uses for commercial business and sustainable operation are discussed. We are aiming at operate the universal medical healthcare platform, which is based on the principle of regulatory science, regionally and globally. In this paper, trials carried out in Kanagawa, Japan and Oulu, Finland will be revealed to illustrate a future medical healthcare social infrastructure by expanding it to Asia-Pacific, Europe and the rest of the world. We are representing the activities of Kanagawa medical device regulatory science center and a joint proposal on security in the dependable medical healthcare platform. Novel schemes of ubiquitous rehabilitation based on analyses of the training effect by remote monitoring of activities and machine learning of patient's electrocardiography (ECG) with a neural network are proposed and briefly investigated.

  • Shintaro IZUMI, Takaaki OKANO, Daichi MATSUNAGA, Hiroshi KAWAGUCHI, Ma ...
    原稿種別: PAPER
    2019 年 E102.B 巻 6 号 p. 1088-1096
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/19
    ジャーナル 認証あり

    This paper describes a non-contact and noise-tolerant heart rate monitoring system using a 24-GHz microwave Doppler sensor. The microwave Doppler sensor placed at some distance from the user's chest detects the small vibrations of the body surface due to the heartbeats. The objective of this work is to detect the instantaneous heart rate (IHR) using this non-contact system in a car, because the possible application of the proposed system is a driver health monitoring based on heart rate variability analysis. IHR can contribute to preventing heart-triggered disasters and to detect mental stress state. However, the Doppler sensor system is very sensitive and it can be easily contaminated by motion artifacts and road noise especially while driving. To address this problem, time-frequency analysis using the parametric method and template matching method are employed. Measurement results show that the Doppler sensor, which is pasted on the clothing surface, can successfully extract the heart rate through clothes. The proposed method achieves 13.1-ms RMS error in IHR measurements conducted on 11 subjects in a car on an ordinary road.

  • Hiroki SHINODA, Daisuke ANZAI, Jens KIRCHNER, Georg FISCHER, Jianqing ...
    原稿種別: PAPER
    2019 年 E102.B 巻 6 号 p. 1097-1103
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/25
    ジャーナル 認証あり

    Stimulus response caused by low-frequency electromagnetic exposure can be used to realize effective medical treatments. However, it is well known that the membrane potential of nerve cells exhibits nonlinearity, particularly in the case of modulated signals, it is important to analyze the nonlinear stimulation effect based on a nerve cell model. This paper adopts the Frankenhaeuser-Huxley (FH) model as the nerve cell model, and evaluates the stimulus response based on the FH model when nerve cells are exposed to low-frequency modulated radio signals such as On-Off Keying (OOK) modulation. This paper investigated the nonlinear effect of the stimulus intensity from the viewpoint of the spike frequency with different modulation parameter values including the induced amplitude and duty cycle. It was confirmed that action potential (AP) rate was higher with OOK-type radio signals than with unmodulated signals.

  • Sukhumarn ARCHASANTISUK, Takahiro AOYAGI
    原稿種別: PAPER
    2019 年 E102.B 巻 6 号 p. 1104-1112
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/25
    ジャーナル 認証あり

    Communication reliability and energy efficiency are important issues that have to be carefully considered in WBAN design. Due to the large path loss variation of the WBAN channel, transmission power control, which adaptively adjusts the radio transmit power to suit the channel condition, is considered in this paper. Human motion is one of the dominant factors that affect the channel characteristics in WBAN. Therefore, this paper introduces motion-aware temporal correlation model-based transmission power control that combines human motion classification and transmission power control to provide an effective approach to realizing reliable and energy-efficient WBAN communication. The human motion classification adopted in this study uses only the received signal strength to identify the human motion; no additional tool is required. The knowledge of human motion is then used to accurately estimate the channel condition and suitably select the transmit power. A performance evaluation shows that the proposed method works well both in the low and high WBAN network loads. Compared to using the fixed Tx power of -5dBm, the proposed method had similar packet loss rate but 20-28 and 27-33 percent lower average energy consumption for the low network traffic and high network traffic cases, respectively.

  • Satoshi SEIMIYA, Takumi KOBAYASHI, Ryuji KOHNO
    原稿種別: PAPER
    2019 年 E102.B 巻 6 号 p. 1113-1120
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/19
    ジャーナル 認証あり

    In this study, under the assumption that a robot (1) has a remotely controllable yawing camera and (2) moves in a uniform linear motion, we propose and investigate how to improve the target recognition rate with the camera, by using wireless feedback loop control. We derive the allowable data rate theoretically, and, from the viewpoint of error and delay control, we propose and evaluate QoS-Hybrid ARQ schemes under data rate constraints. Specifically, the theoretical analyses derive the maximum data rate for sensing and control based on the channel capacity is derived with the Shannon-Hartley theorem and the path-loss channel model inside the human body, i.e. CM2 in IEEE 802.15.6 standard. Then, the adaptive error and delay control schemes, i.e. QoS-HARQ, are proposed considering the two constraints: the maximum data rate and the velocity of the camera's movement. For the performance evaluations, with the 3D robot simulator GAZEBO, we evaluated our proposed schemes in the two scenarios: the static environment and the dynamic environment. The results yield insights into how to improve the recognition rate considerably in each situation.

  • Deng-Fong LU, Chin HSIA, Jian-Chiun LIOU, Yen-Chung HUANG
    原稿種別: PAPER
    2019 年 E102.B 巻 6 号 p. 1121-1127
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/28
    ジャーナル 認証あり

    Design of an equivalent slew-rate monolithic pulse generator using bipolar-CMOS-DMOS (BCD) technology for medical ultrasound transmitters is presented in this paper. The pulse generator employs a floating capacitive coupling level-shifter architecture to produce a high-voltage (Vpp=80V) output. The performance of equivalent slew-rate in the rising and falling edge is achieved by carefully choosing the value of coupling capacitors and the size of the final stage high-voltage MOSFETs of the pulse generator. The measured output pulses show the rising and falling time of 8.6nsec and 8.5nsec, respectively with second harmonic distortion down to -40dBc, indicating the designed pulse generator can be used for advanced ultrasonic harmonic imaging systems.

Regular Section
  • Bin DUO, Junsong LUO, Yong FANG, Yong JIA, Xiaoling ZHONG, Haiyan JIN
    原稿種別: PAPER
    専門分野: Fundamental Theories for Communications
    2019 年 E102.B 巻 6 号 p. 1128-1139
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/03
    ジャーナル 認証あり

    A high-rate coding scheme that polar codes are concatenated with low density generator matrix (LDGM) codes is proposed in this paper. The scheme, referred to as polar-LDGM (PLG) codes, can boost the convergence speed of polar codes and eliminate the error floor behavior of LDGM codes significantly, while retaining the low encoding and decoding complexity. With a sensibly designed Gaussian approximation (GA), we can accurately predict the theoretical performance of PLG codes. The numerical results show that PLG codes have the potential to approach the capacity limit and avoid error floors effectively. Moreover, the encoding complexity is lower than the existing LDPC coded system. This motives the application of powerful PLG codes to satellite communications in which message transmission must be extremely reliable. Therefore, an adaptive relaying protocol (ARP) based on PLG codes for the relay satellite system is proposed. In ARP, the relay transmission is selectively switched to match the channel conditions, which are determined by an error detector. If no errors are detected, the relay satellite in cooperation with the source satellite only needs to forward a portion of the decoded message to the destination satellite. It is proved that the proposed scheme can remarkably improve the error probability performance. Simulation results illustrate the advantages of the proposed scheme

  • Xin ZHANG, Yasuhiro AOKI
    原稿種別: PAPER
    専門分野: Fiber-Optic Transmission for Communications
    2019 年 E102.B 巻 6 号 p. 1140-1147
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/11
    ジャーナル 認証あり

    We have comprehensively studied by numerical simulation high power transmission properties through single mode fiber for non-repeatered system application. We have clearly captured bit error rates (BERs) of digital coherent signal exhibit specific floor levels, depending on transmitter powers, due to fiber nonlinearity. If the maximum transmitter powers are defined as the powers at which BER floor levels are 1.0×10-2 without error correction, those are found to be approximately +20.4dBm, +14.8dBm and +10.6dBm, respectively, for single-channel 120Gbps DP-QPSK, DP-16QAM and DP-64QAM formats in large-core and low-loss single-mode silica fibers. In the simulations, we set fiber lengths over 100km, which is much longer than the effective fiber length, thus the results are applicable to any of long-length non-repeatered systems. We also show that the maximum transmitter powers gradually decrease in logarithmic feature with the increase of the number of DWDM channels. The channel number dependence is newly shown to be almost independent on the modulation format. The simulated results have been compared with extended Gaussian-Noise (GN) model with introducing adjustment parameters, not only to confirm the validity of the results but to explore possible new analytical modeling for non-repeatered systems.

  • Xianwei LI, Bo GU, Cheng ZHANG, Zhi LIU, Kyoko YAMORI, Yoshiaki TANAKA
    原稿種別: PAPER
    専門分野: Network
    2019 年 E102.B 巻 6 号 p. 1148-1159
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/17
    ジャーナル 認証あり

    In recent years, the adoption of Software as a Service (SaaS) cloud services has surpassed that of Infrastructure as a Service (IaaS) cloud service and is now the focus of attention in cloud computing. The cloud market is becoming highly competitive owing to the increasing number of cloud service providers (CSPs), who are likely to exhibit different cloud capacities, i.e., the cloud market is heterogeneous. Moreover, as different users generally exhibit different Quality of Service (QoS) preferences, it is challenging to set prices for cloud services of good QoS. In this study, we investigate the price competition in the heterogeneous cloud market where two SaaS providers, denoted by CSP1 and CSP2, lease virtual machine (VM) instances from IaaS providers to offer cloud-based application services to users. We assume that CSP1 only has M/M/1 queue of VM instances owing to its limited cloud resources, whereas CSP2 has M/M/∞ queue of VM instances reflecting its adequate resources. We consider two price competition scenarios in which two CSPs engage in two games: one is a noncooperative strategic game (NSG) where the two CSPs set prices simultaneously and the other is a Stackelberg game (SG) where CSP2 sets the price first as the leader and is followed by CSP1, who sets the price in response to CSP2. Each user decides which cloud services to purchase (if purchases are to be made) based on the prices and QoS. The NSG scenario corresponds to the practical cloud market, where two CSPs with different cloud capacities begin to offer cloud services simultaneously; meanwhile, the SG scenario covers the instance where a more recent CSP plans to enter a cloud market whose incumbent CSP has larger cloud resources. Equilibrium is achieved in each of the scenarios. Numerical results are presented to verify our theoretical analysis.

  • Chikara FUJIMURA, Kosuke SANADA, Kazuo MORI
    原稿種別: PAPER
    専門分野: Network
    2019 年 E102.B 巻 6 号 p. 1160-1169
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/25
    ジャーナル 認証あり

    Wireless Full-Duplex (FD) communication can double the point-to-point throughput. To obtain the full benefits of the FD technique in multi-hop networks, its potential throughput performance in multi-hop networks should be clarified qualitatively and quantitatively. Developing an analytical model for FD multi-hop networks is effective and useful for not only clarifying such network dynamics but also developing the optimal protocol design. However, generalized analytical expression for the end-to-end throughput of FD multi-hop networks has not been proposed. This paper proposes analytical expressions for the end-to-end throughput of string-topology wireless FD multi-hop networks. Our approach is to integrate with the analytical model of the airtime expression, which is an effective analytical approach of the throughput analysis for Half-Duplex (HD) multi-hop networks, and the Markov-chain model considering the FD MAC operation. The proposed model clarify the detailed effect of the FD MAC operation on the throughput performance in multi-hop networks. In particular, it can obtain the end-to-end throughput of FD multi-hop networks for arbitrary number of hops, arbitrary payload size and arbitrary value of the minimum contention window. The analytical expressions verified by comparisons with the simulation results. From the comparisons with the results in HD multi-hop networks, we confirm the effectiveness of the FD communication in multi-hop networks.

  • Kazunori FUJIWARA, Akira SATO, Kenichi YOSHIDA
    原稿種別: PAPER
    専門分野: Internet
    2019 年 E102.B 巻 6 号 p. 1170-1179
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/03
    ジャーナル フリー

    Recent discussions on increasing the efficiency of the Internet's infrastructure have centered on removing the shared Domain Name System (DNS) resolver and using a local resolver instead. In terms of the cache mechanism, this would involve removing the shared cache from the Internet. Although the removal of unnecessary parts tends to simplify the overall system, such a large configuration change would need to be analyzed before their actual removal. This paper presents our analysis on the effect of a shared DNS resolver based on campus network traffic. We found that (1) this removal can be expected to amplify the DNS traffic to the Internet by about 3.9 times, (2) the amplification ratio of the root DNS is much higher (about 6.3 times), and (3) removing all caching systems from the Internet is likely to amplify the DNS traffic by approximately 16.0 times. Thus, the removal of the shared DNS resolver is not a good idea. Our data analysis also revealed that (4) many clients without local caches generate queries repeatedly at short intervals and (5) deploying local caches is an attractive technique for easing DNS overhead because the amount of traffic from such clients is not small.

  • Hyun Ho PARK, Seungyoung AHN
    原稿種別: PAPER
    専門分野: Antennas and Propagation
    2019 年 E102.B 巻 6 号 p. 1180-1187
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/03
    ジャーナル 認証あり

    This paper presents a rigorous analysis of the electromagnetic scattering and transmission of misaligned dual metallic grating screens. The Fourier transform and the mode-matching technique are employed to obtain an analytical solution. Numerical results show that misaligned dual metal grating screens exhibit asymmetric scattering and transmission properties with respect to the scattering and transmission angles. Parametric studies are conducted in terms of the lateral displacement and vertical distance between the dual metallic grating screens. For validation, the proposed method is compared with a numerical simulation and good agreement has been achieved.

  • Tao XIE, Jiang ZHU, Qian CHENG, Yifu GUAN
    原稿種別: PAPER
    専門分野: Antennas and Propagation
    2019 年 E102.B 巻 6 号 p. 1188-1197
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/17
    ジャーナル 認証あり

    Wireless communication security has been increasingly important nowadays. Directional modulation (DM) is seen as a promising wireless physical layer security technology. Traditional DM is a transmit-side technology that projects digitally modulated information signals in the desired directions (or at the desired locations) while simultaneously distorting the constellation formats of the same signals in other directions (or at all other locations). However, these directly exposed digitally modulated information signals are easily intercepted by eavesdroppers along the desired directions (or around the desired locations). A new DM scheme for secure point-to-multipoint communication based on the spread spectrum assisted orthogonal frequency diverse array (short for SS-OFDA-M-DM) is proposed in this paper. It can achieve point-to-multipoint secure communication for multiple cooperative receivers at different locations. In the proposed SS-OFDA-M-DM scheme, only cooperative users that use specific DM receivers with right spread spectrum parameters can retrieve right symbols. Eavesdroppers without knowledge of spread spectrum parameters cannot intercept useful signals directly at the desired locations. Moreover, they cannot receive normal symbols at other locations either even if the right spread spectrum parameters are known. Numerical simulation results verify the validity of our proposed scheme.

  • Sohee LIM, Seongwook LEE, Jung-Hwan CHOI, Jungmin YOON, Seong-Cheol KI ...
    原稿種別: PAPER
    専門分野: Electromagnetic Compatibility (EMC)
    2019 年 E102.B 巻 6 号 p. 1198-1208
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/11
    ジャーナル 認証あり

    This paper presents an interference suppression and signal restoration technique that can create the clean signals required by automotive frequency-modulated continuous wave radar systems. When a radar signal from another radar system interferes with own transmitted radar signal, the target detection performance is degraded. This is because the beat frequency corresponding to the target cannot be estimated owing to the increase in the noise floor. In this case, advanced weighted-envelope normalization or wavelet denoising can be used to mitigate the effect of the interference; however, these methods can also lead to the loss of the desired signal containing the range and velocity information of the target. Therefore, we propose a method based on an autoregressive model to restore a signal damaged by mutual interference. The method uses signals that are not influenced by the interference to restore the signal. In experiments conducted using two different automotive radar systems, our proposed method is demonstrated to effectively suppress the interference and restore the desired signal. As a result, the noise floor resulting from the mutual interference was lowered and the beat frequency corresponding to the desired target was accurately estimated.

  • Song LIU, Wei PENG, Biao HAN
    原稿種別: PAPER
    専門分野: Terrestrial Wireless Communication/Broadcasting Technologies
    2019 年 E102.B 巻 6 号 p. 1209-1218
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/19
    ジャーナル 認証あり

    Full-duplex access points (APs) deployment can significantly affect network performance of a wireless local area network (WLAN). Unlike in traditional half-duplex networks, location of a full-duplex AP will affect network coverage quality as well as full-duplex transmission opportunities. However, the effect of full-duplex AP deployment on network performance and the differences between half- and full-duplex AP deployment have not been well investigated yet. In this paper, we first theoretically analyze the effect of full-duplex AP deployment on WLAN throughput. Exact full-duplex transmission probability is derived in presence of Rayleigh fading with different AP locations. Our analysis reveal that a good AP deployment profile can exploit more full-duplex transmission opportunities and greatly improve network performance. The full-duplex AP deployment problem is then formulated as an integer linear programming (ILP) problem in which our objective is to obtain optimized network throughput. Then we develop a heuristic algorithm to solve the formulated problem and optimal deployment profile can be produced. Simulation results validate that the WLAN throughput as well as full-duplex transmission opportunities can be significantly improved by our generated full-duplex AP deployment profile.

  • Zhixin LIU, Dexiu HU, Yongsheng ZHAO, Yongjun ZHAO
    原稿種別: PAPER
    専門分野: Sensing
    2019 年 E102.B 巻 6 号 p. 1219-1228
    発行日: 2019/06/01
    公開日: 2019/06/01
    [早期公開] 公開日: 2018/12/03
    ジャーナル 認証あり

    This paper proposes an improved closed-form method for moving source localization using time difference of arrival (TDOA), frequency difference of arrival (FDOA) and differential Doppler rate measurements. After linearizing the measurement equations by introducing three additional parameters, a rough estimate is obtained by using the weighted least-square (WLS) estimator. To further refine the estimate, the relationship between additional parameters and source location is utilized. The proposed method gives a final closed-form solution without iteration or the extra mathematics operations used in existing methods by employing the basic idea of WLS processing. Numerical examples show that the proposed method exhibits better robustness and performance compared with several existing methods.

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