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[Keyword] cognitive(302hit)

261-280hit(302hit)

  • Packet Distribution for Communications Using Multiple IEEE802.11 Wireless Interfaces and Its Impact on TCP

    Yasuhisa TAKIZAWA  Akira YAMAGUCHI  Sadao OBANA  

     
    PAPER-Network

      Vol:
    E92-B No:1
      Page(s):
    159-170

    The expansion and diversification of wireless systems are proceeding rapidly, and the wireless communication environment will become a hybrid environment composed of multiple wireless systems. On the other hand, the resources of wireless systems are finite. Therefore, there is increasing concern that the growing use ofwireless systems will exhaust the finite wireless resources. Cognitive radio has been proposed as a solution to this problem. Cognitive radio aims to optimize the utilization of wireless resources by combining multiple wireless interfaces. Therefore, the future wireless access networks will be composed of multiple wireless systems. In this paper, we propose a packet distribution for communications using multiple IEEE802.11 wireless interfaces. The proposed method optimizes the utilization efficiency of multiple IEEE802.11 wireless interfaces based on a link cost which shows the load of the wireless link, and it improves delay and throughput in the access network. Furthermore, we show its impact on TCP.

  • Soft versus Hard Cooperative Energy Detection under Low SNR

    Junyang SHEN  Gang XIE  Siyang LIU  Lingkang ZENG  Jinchun GAO  Yuanan LIU  

     
    LETTER-Wireless Communication Technologies

      Vol:
    E91-B No:11
      Page(s):
    3732-3735

    Amidst conflicting views about whether soft cooperative energy detection scheme (SCEDS) outperforms hard cooperative energy detection scheme (HCEDS) greatly in cognitive radio, we establish the bridge that mathematically connects SCEDS and HCEDS by closed approximations. Through this bridge, it is demonstrate that, if the number of detectors of HCEDS is 1.6 times as that of SCEDS, they have nearly the same performance which is confirmed by numerical simulations, enabling a quantitative evaluation of the relation between them and a resolution of the conflicting views.

  • Adaptive Multimedia Flow Splitting over WiMAX and WiFi Links

    Jong-Ok KIM  Toshiaki YAMAMOTO  Akira YAMAGUCHI  Sadao OBANA  

     
    PAPER

      Vol:
    E91-B No:10
      Page(s):
    3085-3094

    To meet the bandwidth requirements of multimedia services, multipath transmission is a promising solution. In this paper, we consider multi-access networks, where WiMAX and WiFi links are set up at the same time. Multipath transmission suffers from the intrinsic problem of out-of-order packet delivery. This has an adverse impact on TCP and even UDP-based delay sensitive applications. However, multimedia streaming services allow some tolerance to transmission delay. Motivated by this observation, we investigate how to split multimedia flows over heterogeneous links. Wireless link capacity varies widely over time due to dynamic radio conditions. The capacity variations should be promptly reflected in traffic splitting in order to accomplish an equal load-balance. A practical prototype system has been implemented. We have performed extensive measurements from a prototype system. Through practical experimental results, we could verify two major research goals. One is that multimedia splitting can improve the overall network performance (e.g., the permitted multimedia sessions or the aggregated bandwidth) while still keeping an acceptable media quality. The other is an adaptation capability to varying link quality. It has been widely investigated under various radio conditions and different monitoring intervals. It is shown that the adaptive technique is effective under dynamic radio environments.

  • Sampling Rate Selection for Fractional Sampling in OFDM

    Haruki NISHIMURA  Mamiko INAMORI  Yukitoshi SANADA  

     
    PAPER-Fundamental Theories for Communications

      Vol:
    E91-B No:9
      Page(s):
    2876-2882

    Through fractional sampling, it is possible to separate multipath components and achieve diversity gain. However, power consumption grows as the sampling rate increases. This paper proposes a novel scheme for OFDM systems that selects the sampling rate according to the channel's frequency response. Numerical results through computer simulation show that the proposed sampling rate selection scheme reduces power consumption by reducing oversampling ratio when delay spread is small.

  • Platform for Load Balancing and Throughput Enhancement with Cognitive Radio

    Seishi HANAOKA  Junji YAMAMOTO  Masashi YANO  

     
    PAPER

      Vol:
    E91-B No:8
      Page(s):
    2501-2508

    The cognitive radio system consists of multiple wireless access systems that cover overlapping areas and cognitive terminals that use one or more of the wireless access systems simultaneously. In this paper, we describe the system architecture of a platform for load balancing and throughput enhancement with cognitive radio system. In our platform, each terminal, which can access multiple radio systems, operates with a single local IP address. Based on our platform, we have developed both simulator and testbed system. Through the simulation of and the testing of a testbed system, we prove that systems load balance was achieved between WiMAX and wireless LAN, and total user throughput was increased with the proposed platform. Moreover, load balance to satisfy both real time service and best effort service. These results demonstrate the platform described in the paper can achieve a convergence with plural wireless systems.

  • Modified Direct Insertion/Cancellation Method Based Sample Rate Conversion for Software Defined Radio

    Anas Muhamad BOSTAMAM  Yukitoshi SANADA  Hideki MINAMI  

     
    PAPER-Wireless Communication Technologies

      Vol:
    E91-B No:8
      Page(s):
    2648-2656

    In this paper, a new fractional sample rate conversion (SRC) scheme based on a direct insertion/cancellation scheme is proposed. This scheme is suitable for signals that are sampled at a high sample rate and converted to a lower sample rate. The direct insertion/cancellation scheme may achieve low-complexity and lower power consumption as compared to the other SRC techniques. However, the direct insertion/cancellation technique suffers from large aliasing and distortion. The aliasing from an adjacent channel interferes the desired signal and degrades the performance. Therefore, a modified direct insertion/cancellation scheme is proposed in order to realize high performance resampling.

  • Enhanced Link-Status Detection for High Speed Link Aggregation in Cognitive Radio Networks

    Stefan AUST  Peter DAVIS  Akira YAMAGUCHI  Sadao OBANA  

     
    PAPER

      Vol:
    E91-A No:7
      Page(s):
    1609-1615

    The aggregation of Wi-Fi links has been identified as one way of taking advantage of available channels to achieve higher speed data transmission in future cognitive radio networks. However variations in link quality make it difficult to achieve stable performance from aggregated Wi-Fi links. In this paper we present a method for controlling aggregation of Wi-Fi links based on monitoring of link status. We first discuss the requirements for detecting bad-links which degrade the performance of aggregated Wi-Fi links. We then describe the implementation of an enhanced link-status detection algorithm based on monitoring of signal strength and number of retransmissions. In particular, we address the problems of monitoring and recovering links after they have been dropped from use, and adjusting decision thresholds to adapt to changing wireless conditions. Finally, we report the results of tests which demonstrate the effectiveness for attaining efficient aggregation of Wi-Fi links for high throughput under varying wireless conditions.

  • Pilot Periodicity Based OFDM Signal Detection Method for Cognitive Radio System

    Sung Hwan SOHN  Ning HAN  Guanbo ZHENG  Jae Moung KIM  

     
    LETTER-Wireless Communication Technologies

      Vol:
    E91-B No:5
      Page(s):
    1644-1647

    Cognitive Radio is an advanced enabling technology for efficient utilization of vacant spectrum due to its ability to sense the spectrum environment. Various detection methods have been proposed for spectrum sensing, which is the key function in implementing cognitive radio. However most of the existing methods put their interests in detecting TV signal and wireless microphone signals. In this paper, we explore the periodicity of the equally spaced pilot subcarriers in OFDM signal. Simulations in various fading environments show that the proposed cyclostationarity based detection method works well for OFDM signal.

  • Interference Information Based Power Control for Cognitive Radio with Multi-Hop Cooperative Sensing

    Youngjin YU  Hidekazu MURATA  Koji YAMAMOTO   Susumu YOSHIDA  

     
    PAPER-Spectrum Sensing

      Vol:
    E91-B No:1
      Page(s):
    70-76

    Reliable detection of other radio systems is crucial for systems that share the same frequency band. In wireless communication channels, there is uncertainty in the received signal level due to multipath fading and shadowing. Cooperative sensing techniques in which radio stations share their sensing information can improve the detection probability of other systems. In this paper, a new cooperative sensing scheme that reduces the false detection probability while maintaining the outage probability of other systems is investigated. In the proposed system, sensing information is collected using multi-hop transmission from all sensing stations that detect other systems, and transmission decisions are based on the received sensing information. The proposed system also controls the transmit power based on the received CINRs from the sensing stations. Simulation results reveal that the proposed system can reduce the outage probability of other systems, or improve its link success probability.

  • Packet Switch and Its Impact on Dynamic Base Station Relocation in Mesh Networks Using Cognitive Radio

    Tetsuro UEDA  Kazunori TAKEUCHI  Shoji KANEKO  Shingo NOMURA  Keizo SUGIYAMA  

     
    PAPER-Distributed Optimization

      Vol:
    E91-B No:1
      Page(s):
    102-109

    CR (Cognitive Radio) is a technology that can realize more intensive and efficient spectrum use through spatial and temporal utilization. In the context of mesh networks where each base station consists of heterogeneous multi-radio interfaces, packet switch in L2/L3 of each base station selects each radio interface and channel adaptively in order to take full advantage of all multiple heterogeneous interfaces. At first, this paper examines the achievable performance of the new packet switch schemes in mesh topology. Secondly, we investigate the potentiality of dynamic base station relocation approach in order to cope with the change of terminal traffic distribution, and show the impact of packet switch policy on dynamic base station relocation.

  • Reconfigurable RF CMOS Circuit for Cognitive Radio Open Access

    Kazuya MASU  Kenichi OKADA  

     
    INVITED PAPER

      Vol:
    E91-B No:1
      Page(s):
    10-13

    Cognitive radio and/or SDR (Software Defined Radio) inherently requires multi-band and multi standard wireless circuit. The circuit is implemented based on Si CMOS technology. In this article, the recent progress of Si RF CMOS is described and the reconfigurable RF CMOS circuit which was proposed by the authors is introduced. At the present and in the future, several kind of Si CMOS technology can be used for RF CMOS circuit implementation. The realistic RF CMOS circuit implementation toward cognitive and/or SDR is discussed.

  • Outage Performance of Cognitive Radio with Multiple Receive Antennas

    Qinghai YANG  Shaoyi XU  Kyung Sup KWAK  

     
    PAPER-Spectrum Sensing

      Vol:
    E91-B No:1
      Page(s):
    85-94

    Outage performance of cognitive radios is analyzed in this paper. The scenario under consideration requires the cognitive radio to sense whether the primary user (PU) link is free (i.e. a spectrum hole exists) before making an active transmission using that link. Multiple antennas are available at the cognitive radio link to provide array gains at the sensing stage. We derive a closed-form expression of the outage probability for cognitive transmission by classifying it into several cases. A sensing threshold is deduced according to the PU arrival model illustrated in this paper. Simulation results verify our analysis.

  • Cognitive Implementation of Chirp Waveform in UWB System

    Hanbing SHEN  Weihua ZHANG  Kyung Sup KWAK  

     
    LETTER-Spectrum Sharing

      Vol:
    E91-B No:1
      Page(s):
    147-150

    Cognitive Radios (CR) can recognize the communication environment and switch its communication scheme to more efficiently and flexibly utilize the radio spectrum. The performance of ultra wideband (UWB) degrades if interference is not suppressed properly. We propose here a series of adaptive chirp waveforms in UWB systems. By designing waveform shaping of both linear chirp and non-linear cases, we avoid the estimated spectrum of the on-going applications without the necessity of notch filters, and thus reduce the system complexity. We evaluate system performance of the proposed scheme by simulations and verify that the proposed scheme is a candidate for cognitive UWB systems.

  • Testbed System of Inter-Radio System Switching for Cognitive Radio

    Seishi HANAOKA  Masashi YANO  Tetsuhiko HIRATA  

     
    PAPER-Cognitive Network

      Vol:
    E91-B No:1
      Page(s):
    14-21

    The cognitive radio system consists of multiple wireless access systems that cover overlapping areas and cognitive terminals that use one or more of the wireless accesses simultaneously. In this paper, we describe the architecture of the cognitive radio system and the inter-system handover protocols. In the architecture, each cognitive terminal, which can access multiple radio systems, operates with a single local IP address. The control sequence and packet format are designed to achieve fast handover among the radio systems. Based on the architecture, we have developed a testbed system. On this system, we demonstrate that data can be delivered continuously and radio systems can be switched correctly without any packet loss. In addition, we present the result of the evaluation of the end-to-end latency on the testbed system. These testbed results demonstrate the system architecture described in the paper can achieve a cognitive radio system.

  • Topology Management and Route Establishment Method for Base Station Networks Using Cognitive Radio

    Yujin NOISHIKI  Misato SASAKI  Akira IDOUE  Kazunori TAKEUCHI  

     
    PAPER-Cognitive Network

      Vol:
    E91-B No:1
      Page(s):
    29-37

    Cognitive radio, which utilizes the radio frequency spectrum efficiently by recognizing radio resource availability, is an attractive technology for overcoming the shortage of radio frequency. From the perspective of networking, cognitive radio technologies are also useful since they allow flexible network construction. This paper proposes base station networks using cognitive radio technologies. In order to achieve efficient utilization of the radio frequency spectrum and flexible network construction, we also propose a topology management and route control method for our proposed base station network. Our method shares the status of the wireless links along with topology information and establishes routes by using this information. Through simulation, we evaluate that our method significantly improves the throughput by efficient utilization of the radio frequency spectrum. Moreover, we demonstrate that our method works well when the size of the network gets larger.

  • Proposal of an A/D Converter Clipping Noise Suppression Technique for High-Sensitivity Carrier-Sensing of Cognitive Radio Transceiver

    Tazuko TOMIOKA  Ren SAKATA  Tomoya HORIGUCHI  Takeshi TOMIZAWA  Kaoru INOUE  

     
    PAPER-Enabling Technology

      Vol:
    E91-B No:1
      Page(s):
    119-126

    A technique for suppressing the clipping noise of an analogue-to-digital converter (ADC) is proposed to realize a cognitive radio transceiver that offers high sensitivity carrier-sensing. When a large bandwidth cognitive radio transceiver performs carrier-sensing, it must receive a radio wave that includes many primary user transmissions. The radio wave may have high peak-to-average power ratio (PAPR) and clipping noise may be generated. Clipping noise becomes an obstacle to the achievement of high-sensitivity carrier-sensing. In the proposed technique, the original values of the samples clipped by an ADC are estimated by interpolation. Polynomial spline interpolation to the clipped signal is performed in the first step, and then SINC function interpolation is applied to the spline interpolated signal. The performance was evaluated using the signals with various PAPR. It has been found that suppression performance has a dependency on the number of samples clipped at once rather than on PAPR. Although there is an upper limit for the number of samples clipped at once that can be compensated with high accuracy, about 20 dB suppression of clipping noise was achieved with the medium degree of clipping.

  • Location and Propagation Status Sensing of Interference Signals in Cognitive Radio

    Kanshiro KASHIKI  Mitsuo NOHARA  Satoshi IMATA  Yukiko KISHIKI  

     
    PAPER-Spectrum Sensing

      Vol:
    E91-B No:1
      Page(s):
    77-84

    In a Cognitive Radio system, it is essential to recognize and avoid sources of interference signals. This paper describes a study on a location sensing scheme for interference signals, which utilizes multi-beam phased array antenna for cognitive wireless networks. This paper also elucidates its estimation accuracy of the interference location for the radio communication link using an OFDM signal such as WiMAX. Furthermore, we use the frequency spectrum of the received OFDM interference signal, to create a method that can estimate the propagation status. This spectrum can be monitored by using a software defined radio receiver.

  • A Study on Cognitive Radio Coexisting with Cellular Systems

    Tomoya TANDAI  Tomoya HORIGUCHI  Noritaka DEGUCHI  Takeshi TOMIZAWA  Tazuko TOMIOKA  

     
    PAPER-Cognitive Network

      Vol:
    E91-B No:1
      Page(s):
    38-52

    Cognitive Radios (CRs) are expected to perform more significant role in the view of efficient utilization of the spectrum resources in the future wireless communication networks. In this paper, a cognitive radio coexisting with cellular systems is proposed. In the case that a cellular system adopts Frequency Division Duplex (FDD) as a multiplexing scheme, the proposed CR terminals communicate in local area on uplink channels of the cellular system with transmission powers that don't interfere with base stations of the cellular system. Alternatively, in the case that a cellular system adopts Time Division Duplex (TDD), the CR terminals communicate on uplink slots of the cellular system. However if mobile terminals in the cellular system are near the CR network, uplink signals from the mobile terminals may interfere with the CR communications. In order to avoid interference from the mobile terminals, the CR terminal performs carrier sense during a beginning part of uplink slot, and only when the level of detected signal is below a threshold, then the CR terminal transmits a signal during the remained period of the uplink slot. In this paper, both the single carrier CR network that uses one frequency channel of the cellular system and the multicarrier CR network that uses multiple frequency channels of the cellular system are considered. The probabilities of successful CR communications, the average throughputs of the CR communications according to the positions of the CR network, and the interference levels from cognitive radio network to base stations of the cellular system are evaluated in the computer simulation then the effectiveness of the proposed network is clarified.

  • Autonomous and Decentralized Optimization of Large-Scale Heterogeneous Wireless Networks by Neural Network Dynamics

    Mikio HASEGAWA  Ha Nguyen TRAN  Goh MIYAMOTO  Yoshitoshi MURATA  Hiroshi HARADA  Shuzo KATO  

     
    PAPER-Distributed Optimization

      Vol:
    E91-B No:1
      Page(s):
    110-118

    We propose a neurodynamical approach to a large-scale optimization problem in Cognitive Wireless Clouds, in which a huge number of mobile terminals with multiple different air interfaces autonomously utilize the most appropriate infrastructure wireless networks, by sensing available wireless networks, selecting the most appropriate one, and reconfiguring themselves with seamless handover to the target networks. To deal with such a cognitive radio network, game theory has been applied in order to analyze the stability of the dynamical systems consisting of the mobile terminals' distributed behaviors, but it is not a tool for globally optimizing the state of the network. As a natural optimization dynamical system model suitable for large-scale complex systems, we introduce the neural network dynamics which converges to an optimal state since its property is to continually decrease its energy function. In this paper, we apply such neurodynamics to the optimization problem of radio access technology selection. We compose a neural network that solves the problem, and we show that it is possible to improve total average throughput simply by using distributed and autonomous neuron updates on the terminal side.

  • Direct-Sequence/Spread-Spectrum Communication System with Sampling Rate Selection Diversity

    Yohei SUZUKI  Anas M. BOSTAMAM  Mamiko INAMORI  Yukitoshi SANADA  

     
    PAPER-Wireless Communication Technologies

      Vol:
    E91-B No:1
      Page(s):
    267-273

    In this paper, sampling rate selection diversity (SRSD) scheme for Direct-Sequence/Spread-Spectrum (DS/SS) is proposed. In DS/SS communication systems, oversampling may be employed to increase the signal-to-noise ratio (SNR). However, oversampling enlarges the power consumption because signal processing of the receiver has to be carried out at a higher clock rate. Higher sampling rate does not always maximize the SNR. In the proposed SRSD scheme, the power consumption can be reduced by selecting the optimum sampling rate depending on the characteristics of the channel. The proposed SRSD scheme can also reduce the BER more than the conventional oversampling scheme under certain channel conditions.

261-280hit(302hit)