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521-540hit(1638hit)

  • Compact Matrix-Switch-Based Hierarchical Optical Path Cross-Connect with Colorless Waveband Add/Drop Ratio Restriction

    Ryosuke HIRAKO  Kiyo ISHII  Hiroshi HASEGAWA  Ken-ichi SATO  Osamu MORIWAKI  

     
    PAPER

      Vol:
    E94-B No:4
      Page(s):
    918-927

    We propose a compact matrix-switch-based hierarchical optical cross-connect (HOXC) architecture that effectively handles the colorless waveband add/drop ratio restriction so as to realize switch scale reduction. In order to implement the colorless waveband add/drop function, we develop a wavelength MUX/DMUX that can be commonly used by different wavebands. We prove that the switch scale of the proposed HOXC is much smaller than that of conventional single-layer optical cross-connects (OXCs) and a typical HOXC. Furthermore, we introduce a prototype system based on the proposed architecture that utilizes integrated novel wavelength MUXs/DMUXs. Transmission experiments prove its technical feasibility.

  • Broadband Square Slot Antenna for Circular Polarization with Separated L-Probes and Stubs in the Slot

    Ronald JOSEPH  Syuhei NAKAO  Takeshi FUKUSAKO  

     
    PAPER-Antennas and Propagation

      Vol:
    E94-B No:4
      Page(s):
    951-959

    A novel circularly polarized antenna with square slot for broadband characteristics is proposed in this paper. The horizontal and vertical components of the L-shaped probe, which is a key element to generate circular polarization, are separated in the structure, contrary to the concept of joined probes. Another novelty, placing stubs in the slot, which are attached to the ground plane, is proposed to improve the axial ratio (AR) characteristics of the antenna by around 10%. Placing a reflector at a distance of λ0/4 from the antenna to obtain unidirectional patterns is effective when no stubs are placed in the slot. The antenna attains a < 10 dB return loss bandwidth of 47.5% (2.76-4.48 GHz) and < 3 dB axial ratio (AR) bandwidth of 42.47% (2.67-4.11 GHz) in measurement. Parametric studies on key parameters and measured results are also presented.

  • Multi-Layer Hypercube Photonic Network Architecture for Intra-Datacenter Network

    Toshikazu SAKANO  Akihiro KADOHATA  Yoshiaki SONE  Atsushi WATANABE  Masahiko JINNO  

     
    PAPER

      Vol:
    E94-B No:4
      Page(s):
    910-917

    The popularity of cloud computing services is driving the boom in building mega-datacenters. This trend is forcing significant increases in the required scale of the intra-datacenter network. To meet this requirement, this paper proposes a photonic network architecture based on a multi-layer hypercube topology. The proposed architecture uses the Cyclic-Frequency Arrayed Waveguide Grating (CF-AWG) device to realize a multi-layer hypercube and properly combines several multiplexing systems that include Time Division Multiplexing (TDM), Wavelength Division Multiplexing (WDM), Wave-Band Division Multiplexing (WBDM) and Space Division Multiplexing (SDM). An estimation of the achievable network scale reveals that the proposed architecture can achieve a Peta-bit to Exa-bit class, large scale hypercube network with existing technologies.

  • Theoretical Performance Analysis of an Image-Band Interference Canceller with Deterministic Imbalance Estimation

    Satoshi DENNO  Ke LIU  Tatsuo FURUNO  Masahiro MORIKURA  

     
    PAPER-Wireless Communication Technologies

      Vol:
    E94-B No:4
      Page(s):
    968-977

    It is known that a heterodyne multimode receiver implemented with a single RF (Radio Frequency) receiver suffers from image-band interference due to imbalance, i.e. the phase error and the gain imbalance of the RF Hilbert transformer. The blind image band interference canceler with deterministic imbalance estimation that has been proposed mitigates the image-band interference. This performance of the image-band interference canceler is analyzed theoretically in this paper. As a result, it is revealed that estimation accuracy of the deterministic imbalance estimation is improved slightly as the imbalance becomes greater. In addition, it is also shown that the deterministic estimation achieves better performance as the power of image-band interference increases. The performance is confirmed by computer simulation.

  • Internal Wideband Loop Antenna Using an LC Resonator

    Hyengcheul CHOI  Hyeongdong KIM  

     
    LETTER-Antennas and Propagation

      Vol:
    E94-B No:4
      Page(s):
    1081-1084

    This paper presents a wideband technique for a mobile handset antenna. The proposed method inserts a distributed LC resonator into a loop antenna in order to provide non-uniform resonance shifts; without the use of a multi-radiator the bandwidth can be increased from 320 MHz (1900-2220 MHz) to 880 MHz (1750-2630 MHz). As a result of the wide bandwidth and good radiation efficiency, the proposed antenna can be employed in DCS/PCS/WDCMA/Bluetooth mobile handsets.

  • Accurate TOA Estimating UWB-IR Transceiver for Ranging System in Multi-Path Environment

    Ryosuke FUJIWARA  Kenichi MIZUGAKI  Goichi ONO  Tatsuo NAKAGAWA  Takayasu NORIMATSU  Takahide TERADA  Akira MAEKI  Masayuki MIYAZAKI  

     
    PAPER-Sensing

      Vol:
    E94-B No:3
      Page(s):
    777-785

    In this work, an ultra-wideband impulse radio (UWB-IR) transceiver with accurate time-of-arrival (TOA) estimation for a ranging/positioning system was developed for wireless sensor network applications. The system uses an impulse radio characterized by a low duty cycle and direct-sequence spreading, which enable very precise ranging and good receiver sensitivity. An algorithm enabling the TOA of the first-path signal to be measured accurately in a multi-path environment with simple, low-power and low cost implementations was proposed. UWB chips with CMOS 0.18-µm technology and UWB transceiver modules performed that the accuracy of the proposed ranging system is 18.5 cm in a closed space.

  • QoS-Aware Bandwidth Allocation Algorithm for Multimedia Service Networks

    Sungwook KIM  

     
    LETTER-Network

      Vol:
    E94-B No:3
      Page(s):
    810-812

    Bandwidth is an extremely valuable and scarce resource in multimedia networks. Therefore, efficient bandwidth management is necessary in order to provide high Quality of Service (QoS) to users. In this paper, a new QoS-aware bandwidth allocation algorithm is proposed for the efficient use of available bandwidth. By using the multi-objective optimization technique and Talmud allocation rule, the bandwidth is adaptively controlled to maximize network efficiency while ensuring QoS provisioning. In addition, we adopt the online feedback strategy to dynamically respond to current network conditions. With a simulation study, we demonstrate that the proposed algorithm can adaptively approximate an optimized solution under widely diverse traffic load intensities.

  • BER Analysis and Verification of EBPSK System in AWGN Channel

    Man FENG  Lenan WU  Jiajia DING  Chenhao QI  

     
    LETTER-Transmission Systems and Transmission Equipment for Communications

      Vol:
    E94-B No:3
      Page(s):
    806-809

    The extended binary phase shift keying (EBPSK) transmission system with ultra narrow bandwidth has excellent BER performance, which raises many doubts with the researchers. Therefore, on the premise of the existence of a special filter that can transform the modulated phase information into amplitude information, the theoretical BER formula of EBPSK system in Additive White Gaussian Noise (AWGN) channel has been deduced. This paper gives the theoretical values of the parameters in the above BER formula and discusses the effects of parameters on BER firstly. Then the paper shows that the special impacting filter satisfies the above assumption, therefore, in the frame of binary detection theory, the excellent performance of high-efficiency EBPSK system can be explained and the correction of the theoretical BER formula can be validated.

  • Dynamics Modeling and Induced Vibration Analysis of Momentum Wheel for Control Moment Gyros

    Jong-Oh PARK  Shi-Hwan OH  Ki-Lyuk YONG  Young-Do IM  

     
    LETTER-Noise and Vibration

      Vol:
    E94-A No:3
      Page(s):
    990-994

    Actuator-induced disturbances are among the most crucial factors in correct spacecraft attitude pointing and stability for fine attitude control problems. In order to develop a CMG as an actuator for fine controls, CMG-induced disturbances should be analyzed. Therefore, this paper aims to develop an analytic model that predicts the effect of disturbances to CMGs by assuming static and dynamic imbalances. The proposed analytical model with respect to the disturbances of a CMG is derived using the Lagrange energy method based on the small-signal assumption.

  • State Estimation of LTI Systems with Unknown Input and Sensor Disturbances Using Adaptive PI Observer

    Young Ik SON  

     
    LETTER-Systems and Control

      Vol:
    E94-A No:3
      Page(s):
    1002-1005

    A new state estimation algorithm is presented for a class of LTI systems that have an input disturbance in polynomial form and a sinusoidal sensor disturbance in the measurement output. Adaptation rules are developed for identifying the unknown magnitude, phase and frequency of the sensor disturbance from the system output measurement. For the application of the identification result to the state estimation problem, the sinusoidal signal with arbitrary initial phase has been considered in this paper. In order to test the performance of the proposed algorithm, comparative computer simulations have been carried out with a robust state observer. Simulation results show the effectiveness of the proposed method.

  • An Imaging Algorithm of a Target with Arbitrary Motion for Ultra Wide-Band Radar with a Small Number of Antennas

    Yuji MATSUKI  Takuya SAKAMOTO  Toru SATO  

     
    PAPER-Antennas and Propagation

      Vol:
    E94-B No:3
      Page(s):
    742-749

    UWB (ultra wide-band) pulse radar is a promising candidate for surveillance systems. The fast SEABED (Shape Estimation Algorithm based on BST and Extraction of Directly scattered waves) imaging algorithm is deployed in the application of UWB pulse radar in fields that require real-time operations. However, since the SEABED algorithm uses signals received at multiple locations, this method either needs to scan antennas or to install many antennas. Such systems are inevitably costly and unrealistic for applications such as surveillance. To overcome this problem, a revised SEABED algorithm that estimates unknown target shape based on target motion using only a pair of fixed antennas was developed. However, the method cannot be used when the target moves arbitrarily because it assumes the target motion is parallel to the baseline of the pair of antennas. In this paper, we propose a new UWB radar imaging algorithm that is applicable even for targets with arbitrary motion. The proposed method introduces another antenna which is added to the pair of antennas used in the revised SEABED, and estimates unknown target motion based on the target surface using the three antennas. Next, the proposed method applies the SEABED imaging algorithm to the estimated motion and obtains the target image. Some numerical simulations establishes that the proposed method can accurately estimate the target shape even under severe conditions.

  • Preliminary Study of Performance Evaluation of Adaptive Scan with Wide-Band Noise Modulation for Spaceborne Rain Radar Based on Simulation

    Toyoshi SHIMOMAI  Kentaro ADACHI  Toshiaki KOZU  

     
    PAPER-Sensing

      Vol:
    E94-B No:3
      Page(s):
    786-792

    Wide-band noise modulation is added to the adaptive scan technique for spaceborne rain radar. The performance of this technique is studied by simulation using one month of TRMM (Tropical Rainfall Measuring Mission) Precipitation Radar (PR) data from the viewpoints of improving the sensitivity and reducing power consumption. The results show that the adaptive scan technique with wide-band noise modulation uses about 25% less energy than the conventional scanning technique. The adaptive scan using wide-band noise modulation is more effective than that using a normal pulse for localized rainy areas. Surface data as well as rainfall data can be obtained by using the adaptive scan using wide-band noise modulation.

  • A Broadband High Suppression Frequency Doubler IC for Sub-Millimeter-Wave UWB Applications

    Jiangtao SUN  Qing LIU  Yong-Ju SUH  Takayuki SHIBATA  Toshihiko YOSHIMASU  

     
    PAPER

      Vol:
    E94-A No:2
      Page(s):
    603-610

    A broadband balanced frequency doubler has been demonstrated in 0.25-µm SOI SiGe BiCMOS technology to operate from 22 GHz to 30 GHz. The measured fundamental frequency suppression of greater than 30 dBc is achieved by an internal low pass LC filter. In addition, a pair of matching circuits in parallel with the LO inputs results in high suppression with low input drive power. Maximum measured conversion gain of -6 dB is obtained at the input drive power as low as -1 dBm. The results presented indicate that the proposed frequency doubler can operate in broadband and achieve high fundamental frequency suppression with low input drive power.

  • Min-Max Model Predictive Controller for Trajectory Tracking of a Wheeled Mobile Robot with Slipping Effects

    Yu GAO  Kil To CHONG  

     
    PAPER-Systems and Control

      Vol:
    E94-A No:2
      Page(s):
    680-687

    A min-max model predictive controller is developed in this paper for tracking control of wheeled mobile robots (WMRs) subject to the violation of nonholonomic constraints in an environment without obstacles. The problem is simplified by neglecting the vehicle dynamics and considering only the steering system. The linearized tracking-error kinematic model with the presence of uncertain disturbances is formed in the frame of the robot. And then, the control policy is derived from the worst-case optimization of a quadratic cost function, which penalizes the tracking error and control variables in each sampling time over a finite horizon. As a result, the input sequence must be feasible for all possible disturbance realizations. The performance of the control algorithm is verified via the computer simulations with a predefined trajectory and is compared to a common discrete-time sliding mode control law. The result shows that the proposed method has a better tracking performance and convergence.

  • A Simplified Lattice Structure of Two Dimensional Generalized Lapped Orthogonal Transform

    Taichi YOSHIDA  Seisuke KYOCHI  Masaaki IKEHARA  

     
    PAPER-Digital Signal Processing

      Vol:
    E94-A No:2
      Page(s):
    671-679

    In this paper, we propose a novel lattice structure of two dimensional (2D) nonseparable linear-phase paraunitary filter banks (LPPUFBs) called 2D GenLOT. Muramatsu et al. have previously proposed a lattice structure of 2D nonseparable LPPUFBs which have efficient frequency response. However, the proposed structure requires less number of design parameters and computational costs than the conventional one. Through some design examples and simulation results, we show that both filter banks have comparable frequency response and coding gain.

  • Synthesis of 2-Channel IIR Paraunitary Filter Banks by Successive Extraction of 2-Port Lattice Sections

    Nagato UEDA  Eiji WATANABE  Akinori NISHIHARA  

     
    PAPER-Digital Signal Processing

      Vol:
    E94-A No:2
      Page(s):
    653-660

    This paper proposes a synthesis method of 2-channel IIR paraunitary filter banks by successive extraction of 2-port lattice sections. When a power symmetry transfer function is given, a filter bank is realized as cascade of paraunitary 2-port lattice sections. The method can synthesize both odd- and even-order filters with Butterworth or elliptic characteristics. The number of multiplications per second can also be reduced.

  • Automated Microwave Filter Tuning Based on Successive Optimization of Phase and Amplitude Characteristics

    Yosuke TAKEUCHI  Koichi ICHIGE  Koichi MIYAMOTO  Yoshio EBINE  

     
    PAPER

      Vol:
    E94-A No:2
      Page(s):
    617-624

    This paper presents a novel automated microwave filter tuning method based on successive optimization of phase and amplitude characteristics. We develop an optimization procedure to determine how much the adjusting screws of a filter should be rotated. The proposed filter tuning method consists of two stages; coarse and fine tuning stages. In the first stage, called coarse tuning, the phase response error of the target filter is minimized so that the filter roughly approximates almost ideal bandpass characteristics. Then in the second stage, called fine tuning, two different amplitude response errors are minimized in turn and then the resulting filter well approximate the ideal characteristics. Performance of the proposed tuning procedure is evaluated through some experiments of actual filter tuning.

  • Diversity Precoding for UWB MISO Systems in IEEE Channel Models

    Jinyoung AN  Sangchoon KIM  

     
    LETTER-Spread Spectrum Technologies and Applications

      Vol:
    E94-A No:2
      Page(s):
    875-878

    In this letter, we consider a diversity precoding scheme for signal detection in ultra-wideband (UWB) multiple input single output (MISO) systems, which consists of linear diversity prefilters in the transmitter. For a UWB MISO system, the BER performance of a linear transmit diversity precoding system with imperfect channel estimation is presented in IEEE 802.15.3a UWB multipath channels and also compared with that of a linear receive diversity postcoding approach. It is shown that the diversity precoding UWB MISO system offers the performance equivalent to the diversity postcoding scheme for single input multiple output (SIMO) systems while making the mobiles low-cost and low-power.

  • Channel Allocation and DBA Mechanisms for Improvement of Bandwidth Utilization Performance of ECDM-PON Systems

    Yoshihiro NAKAHIRA  Ryuichi WATANABE  Masayuki KASHIMA  

     
    PAPER-Fiber-Optic Transmission for Communications

      Vol:
    E94-B No:2
      Page(s):
    437-443

    This paper describes a novel channel allocation and DBA (Dynamic Bandwidth Allocation) mechanism for ECDM-PON (Electric Code Division Multiplex -- Passive Optical Network) systems. In the current ECDM-PON systems, each ONU (Optical Network Unit) is limited to 2 or 3 CDM channels. This is because (fixed channel) CDM transmitters are expensive, and tunable CDM transmitters even more expensive. With a small number of CDM channels, the bandwidth utilization ratio is restricted by channel blocking. Our proposed mechanisms can reduce the channel blocking ratio without increasing the number of CDM transmitters or using tunable CDM transmitters. To clarify the advantages of the proposed system performance, we have evaluated the channel non-blocking ratio (Rn) and wasted resource ratio (Rw) when some users request bandwidth more than 100%. Evaluation of the non-blocking ratio, Rn shows that the proposed mechanisms approach the performance of a system with tunable CDM transmitters when the number of ONUs with over 100% traffic load is small. We have also simulated throughput for uniform traffic. In addition to these evaluations, we implemented our proposed mechanism on an FPGA (Field Programming Gate Array) and evaluated the calculation speed to allocate timeslots on CDM channels and a timeline.

  • An Approximative Calculation of the Fractal Structure in Self-Similar Tilings

    Yukio HAYASHI  

     
    LETTER-Nonlinear Problems

      Vol:
    E94-A No:2
      Page(s):
    846-849

    Fractal structures emerge from statistical and hierarchical processes in urban development or network evolution. In a class of efficient and robust geographical networks, we derive the size distribution of layered areas, and estimate the fractal dimension by using the distribution without huge computations. This method can be applied to self-similar tilings based on a stochastic process.

521-540hit(1638hit)