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[Author] Hong WAN(42hit)

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  • Combined Self-Test of Analog Portion and ADCs in Integrated Mixed-Signal Circuits

    Geng HU  Hong WANG  Shiyuan YANG  

     
    PAPER-Dependable Computing

      Vol:
    E91-D No:8
      Page(s):
    2134-2140

    Testing is a critical stage in integrated circuits production in order to guarantee reliability. The complexity and high integration level of mixed-signal ICs has put forward new challenges to circuit testing. This paper describes an oscillation-based combined self-test strategy for the analog portion and analog-to-digital converters (ADCs) in integrated mixed-signal circuits. In test mode, the analog portion under test is reconfigured into an oscillator, generating periodic signals as the test stimulus of ADC. By analyzing the A/D conversion results, a histogram test of ADC can be performed, and the oscillation frequency as well as amplitude can be checked, and in this way the oscillation test of the analog portion is realized simultaneously. For an analog benchmark circuit combined with an ADC, triangle oscillation and sinusoid oscillation schemes are both given to test their faults. Experimental results show that fault coverage of the analog portion is 92.2% and 94.3% in the two schemes respectively, and faults in the ADC can also be tested.

  • Modified Error Correction/Detection Decoding Scheme of Binary Hamming Codes

    Siu-Wai MOK  Mu-Zhong WANG  Kam-Chi LI  

     
    LETTER-Information Theory and Coding Theory

      Vol:
    E80-A No:4
      Page(s):
    786-788

    A modified error correction/detection scheme based on the scheme by Yi and Lee is proposed. Algebraic decoding is used to perform error correction. Error detection is performed by an absolute value test. It is shown that the proposed scheme bridges the performance gap between Yi and Lee's scheme and Forney's optimal scheme.

  • A CNN-Based Optimal CTU λ Decision for HEVC Intra Rate Control

    Lili WEI  Zhenglong YANG  Zhenming WANG  Guozhong WANG  

     
    LETTER-Image Processing and Video Processing

      Pubricized:
    2021/07/19
      Vol:
    E104-D No:10
      Page(s):
    1766-1769

    Since HEVC intra rate control has no prior information to rely on for coding, it is a difficult work to obtain the optimal λ for every coding tree unit (CTU). In this paper, a convolutional neural network (CNN) based intra rate control is proposed. Firstly, a CNN with two last output channels is used to predict the key parameters of the CTU R-λ curve. For well training the CNN, a combining loss function is built and the balance factor γ is explored to achieve the minimum loss result. Secondly, the initial CTU λ can be calculated by the predicted results of the CNN and the allocated bit per pixel (bpp). According to the rate distortion optimization (RDO) of a frame, a spatial equation is derived between the CTU λ and the frame λ. Lastly, The CTU clipping function is used to obtain the optimal CTU λ for the intra rate control. The experimental results show that the proposed algorithm improves the intra rate control performance significantly with a good rate control accuracy.

  • An Object Based Cooperative Spectrum Sensing Scheme with Best Relay

    Meiling LI  Anhong WANG  

     
    LETTER-Numerical Analysis and Optimization

      Vol:
    E96-A No:6
      Page(s):
    1492-1495

    The performance of cooperative spectrum sensing (CSS) is limited not only by the imperfect sensing channels but also by the imperfect reporting channels. In order to improve the transmission reliability of the reporting channels, an object based cooperative spectrum sensing scheme with best relay (Pe-BRCS) is proposed, in which the best relay is selected by minimizing the total reporting error probability to improve the sensing performance. Numerical results show that, the reduced total reporting error probability and the improved sensing performance can be achieved by the Pe-BRCS scheme.

  • A Delay Evaluation Circuit for Analog BIST Function

    Zhengliang LV  Shiyuan YANG  Hong WANG  Linda MILOR  

     
    PAPER-Semiconductor Materials and Devices

      Vol:
    E96-C No:3
      Page(s):
    393-401

    Process variation causes significant fluctuations in the timing performance of analog circuits, which causes a fraction of circuits to fail specifications. By testing the delay-performance, we can recognize the failed circuits during production testing. In this paper, we have proposed a low overhead and process tolerant delay evaluation circuit for built-in self test (BIST) function for analog differential circuits. This circuit contains a delay generation cell, an input differential signal generation cell, a delay matching cell, a sample-hold circuit, and a comparator. This circuit was implemented with 0.18 µm CMOS process. Simulation results over process variation, devices mismatch and layout parasitics, but without silicon measurement, show that the accuracy in delay detection is within 5 ps. A case study was done over a feed-forward equalizer (FFE). A typical use of this circuit is testing the delay of various FIR (Finite Impulse Response) filters.

  • Adaptive Block-Wise Compressive Image Sensing Based on Visual Perception

    Xue ZHANG  Anhong WANG  Bing ZENG  Lei LIU  Zhuo LIU  

     
    LETTER-Image Processing and Video Processing

      Vol:
    E96-D No:2
      Page(s):
    383-386

    Numerous examples in image processing have demonstrated that human visual perception can be exploited to improve processing performance. This paper presents another showcase in which some visual information is employed to guide adaptive block-wise compressive sensing (ABCS) for image data, i.e., a varying CS-sampling rate is applied on different blocks according to the visual contents in each block. To this end, we propose a visual analysis based on the discrete cosine transform (DCT) coefficients of each block reconstructed at the decoder side. The analysis result is sent back to the CS encoder, stage-by-stage via a feedback channel, so that we can decide which blocks should be further CS-sampled and what is the extra sampling rate. In this way, we can perform multiple passes of reconstruction to improve the quality progressively. Simulation results show that our scheme leads to a significant improvement over the existing ones with a fixed sampling rate.

  • Dereverberation of Speech Signals Based on Sub-Band Envelope Estimation

    Hong WANG  Fumitada ITAKURA  

     
    PAPER-Acoustics

      Vol:
    E74-A No:11
      Page(s):
    3576-3583

    The full band inverse fiter of an acoustic field usually can not be approximated by causal filter because of its non-minimum phase property. However, by dividing the full band signal into many sub-bands, most of the sub-bands, that do not have zeros extremely close to or outside of the unit circle, can be inverted by causal filter. In this paper, a method of recovering the reverberated speech signals by sub-band envelope estimation is proposed. A reference signal and its reverberated version are supposed to be known at the parameter estimation phase. Both signals are divided into many sub-bands. The dereverberation filter for each sub-band is calculated by the least mean square extimation of the reference sub-band signal from the reverberated one. Reverberated signals under the same condition can be recovered using the estimated dereverberation filters. Comparison of the dereverberation error and distribution of the room transfer function zeros showed that the sub-bands that have large dereverberation errors are those with zeros extremely close to or outside of the unit circle. The performance of the dereverberation is improved with the increase of the number of sub-bands. The reverberated speech is recovered in good quality when the reverberation time is less than 0.43s, which is approximately the reverberation condition of the general small office rooms.

  • A Unified View of RAKE Reception and Its Application on Receiver Designs for Multimedia Capable Mobile Terminals in W-CDMA

    Sukvasant TANTIKOVIT  Muzhong WANG  

     
    PAPER

      Vol:
    E85-B No:10
      Page(s):
    1944-1956

    A unified view of RAKE reception is proposed which models a RAKE receiver as an antenna array. This unified view provides valuable insight to the signal environment under RAKE reception. Based on this view, an optimum combining scheme for RAKE receivers is proposed for the downlink of multi-code W-CDMA systems. In multi-code scenarios, the presence of inter-code interference causes severe performance degradation. The antenna array model suggests that enhancement can be achieved by increasing the receiver's degrees of freedom which is defined as the number of RAKE fingers and employs an appropriate combining scheme. The conventional maximum-ratio combining scheme is excluded since it is not capable of exploiting the increased degrees of freedom. In contrast, the proposed combining scheme provides better interference suppression when the degrees of freedom are increased. Numerical results obtained show that the proposed scheme provides very promising performance.

  • A Novel Wireless Multimedia CDMA System Based on Adaptive Chip/Bit Rate Control

    Meizhong WANG  Ryuji KOHNO  

     
    LETTER

      Vol:
    E81-A No:11
      Page(s):
    2341-2345

    When wireless multi-media information such as voice, video, data and so on are transmitted, the difference required quality of Service (QoS) including required Bit Error Rate (BER), required information bit rate, message's delay constraints as well as traffic performance should be taken into account. A wireless multi-media system should achieve a flexible balance of these differences. In this letter, an Adaptive Chip/Bit Control Method is proposed for Wireless Multi-media CDMA System. The proposed method controls both chip and bit rate of each medium according to the offered traffic condition and the quality measurement of each medium. In the proposed method, measurement are carried out in the base station. Simulation results show that the proposed method not only maintain the required BER of each medium, but achieve a higher total throughput even in high traffic condition. Thus we see that the proposed method possesses higher flexible ability than conventional methods.

  • Bilateral Convolutional Activations Encoded with Fisher Vectors for Scene Character Recognition

    Zhong ZHANG  Hong WANG  Shuang LIU  Tariq S. DURRANI  

     
    LETTER-Image Recognition, Computer Vision

      Pubricized:
    2018/02/02
      Vol:
    E101-D No:5
      Page(s):
    1453-1456

    A rich and robust representation for scene characters plays a significant role in automatically understanding the text in images. In this letter, we focus on the issue of feature representation, and propose a novel encoding method named bilateral convolutional activations encoded with Fisher vectors (BCA-FV) for scene character recognition. Concretely, we first extract convolutional activation descriptors from convolutional maps and then build a bilateral convolutional activation map (BCAM) to capture the relationship between the convolutional activation response and the spatial structure information. Finally, in order to obtain the global feature representation, the BCAM is injected into FV to encode convolutional activation descriptors. Hence, the BCA-FV can effectively integrate the prominent features and spatial structure information for character representation. We verify our method on two widely used databases (ICDAR2003 and Chars74K), and the experimental results demonstrate that our method achieves better results than the state-of-the-art methods. In addition, we further validate the proposed BCA-FV on the “Pan+ChiPhoto” database for Chinese scene character recognition, and the experimental results show the good generalization ability of the proposed BCA-FV.

  • Nonnegative Component Representation with Hierarchical Dictionary Learning Strategy for Action Recognition

    Jianhong WANG  Pinzheng ZHANG  Linmin LUO  

     
    LETTER-Pattern Recognition

      Pubricized:
    2016/01/13
      Vol:
    E99-D No:4
      Page(s):
    1259-1263

    Nonnegative component representation (NCR) is a mid-level representation based on nonnegative matrix factorization (NMF). Recently, it has attached much attention and achieved encouraging result for action recognition. In this paper, we propose a novel hierarchical dictionary learning strategy (HDLS) for NMF to improve the performance of NCR. Considering the variability of action classes, HDLS clusters the similar classes into groups and forms a two-layer hierarchical class model. The groups in the first layer are disjoint, while in the second layer, the classes in each group are correlated. HDLS takes account of the differences between two layers and proposes to use different dictionary learning methods for this two layers, including the discriminant class-specific NMF for the first layer and the discriminant joint dictionary NMF for the second layer. The proposed approach is extensively tested on three public datasets and the experimental results demonstrate the effectiveness and superiority of NCR with HDLS for large-scale action recognition.

  • Fast Coding Unit Size Decision in HEVC Intra Coding

    Tao FAN  Guozhong WANG  Xiwu SHANG  

     
    LETTER-Image Processing and Video Processing

      Pubricized:
    2016/04/15
      Vol:
    E99-D No:7
      Page(s):
    1953-1956

    The current high efficiency video coding (HEVC) standard is developed to achieve greatly improved compression performance compared with the previous coding standard H.264/AVC. It adopts a quadtree based picture partition structure to flexibility signal various texture characteristics of images. However, this results in a dramatic increase in computational complexity, which obstructs HEVC in real-time application. To alleviate this problem, we propose a fast coding unit (CU) size decision algorithm in HEVC intra coding based on consideration of the depth level of neighboring CUs, distribution of rate distortion (RD) value and distribution of residual data. Experimental results demonstrate that the proposed algorithm can achieve up to 60% time reduction with negligible RD performance loss.

  • A Distributed Backup Routes Mechanism for Mobile Ad Hoc Networks

    Ying-Hong WANG  Chih-Chieh CHUANG  Chih-Feng CHAO  

     
    PAPER-Wireless and Sensor Networks

      Vol:
    E89-D No:2
      Page(s):
    516-526

    A mobile ad hoc network (MANET) is a self-organizing and adaptive wireless network constructed by the dynamic gathering of mobile nodes (MNs). The communication among MNs in MANETs is carried out without base stations or access points and the transmission of data packets is completed through relays among nodes. Due to the mobility of MNs, the topology of a MANET frequently changes and thus results in the disability of on-the-fly data transmission routes. To cope with the intrinsic properties of MANETs, Dynamic Backup Routes Routing Protocol (DBR2P), a distributed backup routes mechanism for quick reconnection during link failures, is proposed in this paper. DBR2P is an on-demand routing protocol which can set up many backup routes to reach a destination node in a given period of time. The information of backup routes can be saved in a specific on-the-route node and enables backup routes to be found immediately in situation regarding disconnection. When a link fails, routes from the source node to the destination node are analyzed to obtain backup routes and to sustain quick reconnection. As a result, DBR2P could more thoroughly improve the quality of routing than previous routing protocols.

  • GA-MAP: An Error Tolerant Address Mapping Method in Data Center Networks Based on Improved Genetic Algorithm

    Gang DENG  Hong WANG  Zhenghu GONG  Lin CHEN  Xu ZHOU  

     
    PAPER-Network

      Pubricized:
    2015/09/15
      Vol:
    E98-D No:12
      Page(s):
    2071-2081

    Address configuration is a key problem in data center networks. The core issue of automatic address configuration is assigning logical addresses to the physical network according to a blueprint, namely logical-to-device ID mapping, which can be formulated as a graph isomorphic problem and is hard. Recently years, some work has been proposed for this problem, such as DAC and ETAC. DAC adopts a sub-graph isomorphic algorithm. By leveraging the structure characteristic of data center network, DAC can finish the mapping process quickly when there is no malfunction. However, in the presence of any malfunctions, DAC need human effort to correct these malfunctions and thus is time-consuming. ETAC improves on DAC and can finish mapping even in the presence of malfunctions. However, ETAC also suffers from some robustness and efficiency problems. In this paper, we present GA-MAP, a data center networks address mapping algorithm based on genetic algorithm. By intelligently leveraging the structure characteristic of data center networks and the global search characteristic of genetic algorithm, GA-MAP can solve the address mapping problem quickly. Moreover, GA-MAP can even finish address mapping when physical network involved in malfunctions, making it more robust than ETAC. We evaluate GA-MAP via extensive simulation in several of aspects, including computation time, error-tolerance, convergence characteristic and the influence of population size. The simulation results demonstrate that GA-MAP is effective for data center addresses mapping.

  • Scene Character Recognition Using Coupled Spatial Learning

    Zhong ZHANG  Hong WANG  Shuang LIU  Liang ZHENG  

     
    LETTER-Image Recognition, Computer Vision

      Pubricized:
    2017/04/17
      Vol:
    E100-D No:7
      Page(s):
    1546-1549

    Feature representation, as a key component of scene character recognition, has been widely studied and a number of effective methods have been proposed. In this letter, we propose the novel method named coupled spatial learning (CSL) for scene character representation. Different from the existing methods, the proposed CSL method simultaneously discover the spatial context in both the dictionary learning and coding stages. Concretely, we propose to build the spatial dictionary by preserving the corresponding positions of the codewords. Correspondingly, we introduce the spatial coding strategy which utilizes the spatiality regularization to consider the relationship among features in the Euclidean space. Based on the spatial dictionary and spatial coding, the spatial context can be effectively integrated in the visual representations. We verify our method on two widely used databases (ICDAR2003 and Chars74k), and the experimental results demonstrate that our method achieves competitive results compared with the state-of-the-art methods. In addition, we further validate the proposed CSL method on the Caltech-101 database for image classification task, and the experimental results show the good generalization ability of the proposed CSL.

  • A Foreground-Background-Based CTU λ Decision Algorithm for HEVC Rate Control of Surveillance Videos

    Zhenglong YANG  Guozhong WANG  GuoWei TENG  

     
    LETTER-Image Processing and Video Processing

      Pubricized:
    2018/12/18
      Vol:
    E102-D No:3
      Page(s):
    670-674

    Although HEVC rate control can achieve high coding efficiency, it still does not fully utilize the special characteristics of surveillance videos, which typically have a moving foreground and relatively static background. For surveillance videos, it is usually necessary to provide a better coding quality of the moving foreground. In this paper, a foreground-background CTU λ separate decision scheme is proposed. First, low-complexity pixel-based segmentation is presented to obtain the foreground and the background. Second, the rate distortion (RD) characteristics of the foreground and the background are explored. With the rate distortion optimization (RDO) process, the average CTU λ value of the foreground or the background should be equal to the frame λ. Then, a separate optimal CTU λ decision is proposed with a separate λ clipping method. Finally, a separate updating process is used to obtain reasonable parameters for the foreground and the background. The experimental results show that the quality of the foreground is improved by 0.30 dB in the random access configuration and 0.45 dB in the low delay configuration without degradation of either the rate control accuracy or whole frame quality.

  • On Optimum Combining for Forward-Link W-CDMA in the Presence of Interpath Interference

    Sukvasant TANTIKOVIT  Muzhong WANG  Asrar U. H. SHEIKH  

     
    LETTER-Wireless Communication Technology

      Vol:
    E84-B No:12
      Page(s):
    3286-3289

    It is well known that interpath interference (IPI) is a major factor that limits the performance of high data rate transmissions over a variable spreading factor wideband-CDMA (W-CDMA) link since the spreading factor is in general small. An optimum combining scheme suppressing IPI was recently proposed for RAKE reception in [1]. The main contribution of this letter is to present a theoretical model for the outage probability and bit error probability of a RAKE receiver utilizing the optimum combining scheme. Analytical and simulation results are closely matched and show that the optimum scheme provides significant performance improvement compared to the conventional maximum ratio combining (MRC) scheme.

  • Security Notes on Generalization of Threshold Signature and Authenticated Encryption

    Shuhong WANG  Guilin WANG  Feng BAO  Jie WANG  

     
    LETTER-Information Security

      Vol:
    E87-A No:12
      Page(s):
    3443-3446

    In 2000, Wang et al. proposed a (t,n) threshold signature scheme with (k,l) threshold shared verification, and a (t,n) threshold authenticated encryption scheme with (k,l) threshold shared verification. Later, Tseng et al. mounted some attacks against Wang et al.'s schemes. At the same, they also presented the improvements. In this paper, we first point out that Tseng et al.'s attacks are actually invalid due to their misunderstanding of Wang et al.'s Schemes. Then, we show that both Wang et al.'s schemes and Tseng et al.'s improvements are indeed insecure by demonstrating several effective attacks.

  • High-Order Bi-orthogonal Fourier Transform and Its Applications in Non-stability Signal Analysis

    Hong WANG  Yue-hua LI  Ben-qing WANG  

     
    LETTER-Fundamentals of Information Systems

      Vol:
    E98-D No:1
      Page(s):
    189-192

    This paper presents a novel signal analysis algorithm, named High-order Bi-orthogonal Fourier Transform (HBFT), which can be seen as an expansion of Fourier transform. The HBFT formula and discrete HBFT formula are derived, some of their main characteristics are briefly discusses. This paper also uses HBFT to analyze the multi-LFM signals, obtain the modulate rate parameters, analyze the high dynamic signals, and obtain the accelerated and varying accelerated motion parameters. The result proves that HBFT is suitable for analysis of the non-stability signals with high-order components.

  • Combined Code Aided Adaptive Equalization and Soft Decision-Directed Algorithm for Wireless Communications

    Yun Fo LEE  Mu Zhong WANG  

     
    LETTER-Wireless Communication Technology

      Vol:
    E85-B No:7
      Page(s):
    1402-1405

    We propose using a soft decision-directed least-mean-square algorithm in a code-aided equalization scheme for fading channels. Soft-output Viterbi algorithm (SOVA) is modified and applied to strengthen the second-stage equalizer adaptation in the scheme. Simulation results are presented for bit error rate performance in a multipath environment for various normalized fade rates. The proposed equalizer scheme is shown to provide significant bit error rate improvement compared to conventional equalization schemes.

1-20hit(42hit)