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    • 21. 发明授权
    • Wireless communication system, wireless communication apparatus, wireless communication method, and computer program
    • 无线通信系统,无线通信装置,无线通信方式以及计算机程序
    • US07489651B2
    • 2009-02-10
    • US11134394
    • 2005-05-23
    • Shigeru SugayaMitsuhiro Suzuki
    • Shigeru SugayaMitsuhiro Suzuki
    • H04Q7/20
    • H04W28/26H04W72/1247
    • In the case where there is a conflict over a band between communication stations that have reserved the band, the communication stations mediate and avoid the conflict of reservation use with low-load processing. In a wireless communication system, band reservation use is permitted, and a plurality of reservation types are provided according to priority of communication. A communication station that performs reservation use describes a reservation type and a rock-paper-scissors value in a beacon. When there occurs a conflict of reservation use at some area, reservation use having higher priority remains, and a communication station that has performed reservation use having a lower priority moves it to another area. In the case where there is a conflict between reservations having the same priority, the communication apparatuses that have performed reservation use perform control by rock-paper-scissors between themselves, and move the reservation of the apparatus that has lost by the judgment.
    • 在已经预留了频带的通信站之间的频带上存在冲突的情况下,通信站调停并避免与低负载处理的预约使用冲突。 在无线通信系统中,允许使用频带预约,根据通信的优先级提供多种预约类型。 执行预约使用的通信站在信标中描述预约类型和摇滚纸剪刀值。 当在某些区域发生预约使用冲突时,保留较高优先级的预约使用保持不变,并且具有较低优先级的执行预约使用的通信站将其移动到另一区域。 在具有相同优先权的预约之间存在冲突的情况下,执行预约使用的通信装置在它们之间进行摇滚剪刀的控制,并且移动由判断失去的设备的预留。
    • 22. 发明授权
    • Transmitting apparatus, receiving apparatus, communication system, transmission method, reception method, and communication method
    • 发送装置,接收装置,通信系统,发送方法,接收方法和通信方法
    • US07489622B2
    • 2009-02-10
    • US11085344
    • 2005-03-21
    • Kazuyuki SakodaMitsuhiro Suzuki
    • Kazuyuki SakodaMitsuhiro Suzuki
    • H04J11/00
    • H04L27/2601
    • A transmitting apparatus, receiving apparatus, communication system, and a signal processing method for each apply a suitable modulation method and transmission path estimation method in accordance with the characteristics of the transmission information and capable of improving the transmission efficiency. At the transmission side, the method of estimation of the transmission path and the modulation method are selected in accordance with an attribute of the data to be transmitted, for example, the size of a packet to be transmitted, the transmission data is mapped by the selected modulation method, the signal is processed in accordance with the transmission path estimation method, and a transmission signal is created by increase fast Fourier transform processing and transmitted. At the reception side, the received signal is fast Fourier transformed, the transmission path is estimated by the transmission path estimation method selected at the transmission side, the received signal is corrected in accordance with the result, and the received data is reproduced in accordance with the modulation method. Therefore, it is possible to always adopt the optimum transmission method in accordance with the attribute of the transmission data etc. and possible to realize an improvement of a transmission efficiency and an enhancement of the quality of communication.
    • 一种发送装置,接收装置,通信系统和信号处理方法,用于根据传输信息的特性应用适当的调制方法和传输路径估计方法,并且能够提高传输效率。 在发送侧,根据要发送的数据的属性,例如要发送的分组的大小来选择传输路径的估计方法和调制方法,发送数据被映射到 选择的调制方法,根据传输路径估计方法对信号进行处理,并且通过增加快速傅立叶变换处理并发送来产生传输信号。 在接收侧,接收信号被快速傅立叶变换,通过在发送侧选择的传输路径估计方法估计传输路径,根据结果校正接收信号,并根据接收信号再现接收的数据 调制方式。 因此,可以始终采用根据传输数据等的属性的最佳传输方法,并且可以实现传输效率的提高和通信质量的提高。
    • 23. 发明申请
    • Communication Device, Communication Method, and Computer Program
    • 通信设备,通信方法和计算机程序
    • US20080201627A1
    • 2008-08-21
    • US12026055
    • 2008-02-05
    • Hiroyuki YAMASUGEMitsuhiro Suzuki
    • Hiroyuki YAMASUGEMitsuhiro Suzuki
    • G06F11/16H03M13/15
    • H04L1/0045H03M13/2936H04L1/0061
    • A communication device configured to perform packet reception processing, with the header of a packet including a header sequence and a Reed-Solomon code, includes: a header check sequence inspecting unit configured to detect, based on the header check sequence included in a received packet header, an error of the header; a Reed-Solomon encoding unit configured to encode the header of a received packet other than the Reed-Solomon code to generate a Reed-Solomon code; a Reed-Solomon code inspecting unit configured to detect whether or not the Reed-Solomon code generated by the Reed-Solomon encoding unit is completely identical to the Reed-Solomon code within the received packet header; and a processing control unit configured to control payload processing of a received packet in accordance with the inspection results of the header check sequence inspecting unit and the Reed-Solomon code inspecting unit.
    • 一种被配置为执行分组接收处理的通信装置,包括头序列和里德 - 所罗门码的分组的头部包括:头部检查序列检查单元,被配置为基于包括在接收分组中的头部检查序列 头,头的错误; Reed-Solomon编码单元,被配置为对Reed-Solomon码以外的接收分组的报头进行编码,以生成Reed-Solomon码; Reed-Solomon码检测单元,被配置为检测由Reed-Solomon编码单元生成的Reed-Solomon码是否与接收到的包头内的Reed-Solomon码完全相同; 以及处理控制单元,被配置为根据头部检查序列检查单元和里德 - 所罗门码检测单元的检查结果来控制接收到的分组的有效载荷处理。
    • 24. 发明授权
    • Semiconductor device including a high voltage transistor
    • 半导体器件包括高压晶体管
    • US07196393B2
    • 2007-03-27
    • US11072310
    • 2005-03-07
    • Mitsuhiro SuzukiMinoru MorinagaYukihiro Inoue
    • Mitsuhiro SuzukiMinoru MorinagaYukihiro Inoue
    • H01L29/00
    • H01L29/7835H01L29/1045H01L29/105H01L29/42368H01L29/66659
    • A drain diffusion layer 11b includes a low impurity concentration region 5a and a high impurity concentration region 5b, and the low impurity concentration region 5a is located on the channel region side. An impurity layer 7 having an opposite conductivity type to the drain diffusion layer 11b is formed in the channel region, at a position away from the low impurity concentration region 5a by a distance T. Alternatively, the low impurity concentration region 5a and the impurity layer 7 are located so as to contact each other. Still alternatively, a border impurity layer is provided between the low impurity concentration region 5a and the impurity layer 7. Thus, a semiconductor device including a high voltage transistor capable of suppressing the reduction of the electric current driving capability and performing stable driving, and a method for fabricating the same, can be provided.
    • 漏极扩散层11b包括低杂质浓度区域5a和高杂质浓度区域5b,低杂质浓度区域5a位于沟道区域侧。 在漏极扩散层11b具有相反导电类型的杂质层7在远离低杂质浓度区域5a的位置处在沟道区域中形成距离T.或者,低杂质浓度区域5a和 杂质层7被定位成彼此接触。 或者,在低杂质浓度区域5a和杂质层7之间设置边界杂质层。 因此,可以提供包括能够抑制电流驱动能力降低和执行稳定驱动的高压晶体管的半导体器件及其制造方法。
    • 26. 发明申请
    • Transmission device, transmission method , and storage medium
    • 传输设备,传输方式和存储介质
    • US20060154624A1
    • 2006-07-13
    • US10528473
    • 2004-08-12
    • Mitsuhiro Suzuki
    • Mitsuhiro Suzuki
    • H04B1/04H01Q11/12
    • H04L27/2602H04B1/7163H04L27/261
    • Disclosed is a method that preferably performs transmission processing to a time sequence signal of a known pattern as the pre-amble and an OFDM transmitted signal. In data communications, the general practice defines the pre-amble and detects the peaks of the mutual correlation to thereby detect synchronization. The pre-amble here is defined by the binary value in most cases for simplification of a correlation detecting device. In this case, the spectrum becomes irregular with sharp peaks and dips, which deteriorates the correlation characteristic. The method of the invention forcibly adjusts the spectrum amplitude of the pre-amble pattern on the transmitting side while retaining the phase information thereof, and thereby the method improves the spectrum and correlation characteristics while securing simplification of a correlation detecting device on the receiving side.
    • 公开了一种优选对已知模式的时序信号作为前同步码和OFDM发送信号进行发送处理的方法。 在数据通信中,一般做法定义了前同步码并检测相互关联的峰值,从而检测同步。 这里的前导码在大多数情况下由二进制值定义,用于简化相关检测装置。 在这种情况下,光谱变得不规则,具有尖峰和倾斜,这降低了相关特性。 本发明的方法在保持其相位信息的同时强制地调整发送侧的前置码模式的频谱幅度,从而在确保接收侧的相关检测装置的简化的同时,提高了频谱和相关特性。
    • 29. 发明授权
    • Transmitting apparatus, receiving apparatus, communication system, transmission method, reception method, and communication method
    • 发送装置,接收装置,通信系统,发送方法,接收方法和通信方法
    • US06888789B1
    • 2005-05-03
    • US09656153
    • 2000-09-06
    • Kazuyuki SakodaMitsuhiro Suzuki
    • Kazuyuki SakodaMitsuhiro Suzuki
    • H04J11/00H04B1/76H04B3/10H04L27/26
    • H04L5/0048H04L5/0007H04L5/006H04L5/0085H04L25/0226H04L27/0008H04L27/3455
    • A transmitting apparatus, receiving apparatus, communication system, and a signal processing method of each applying a suitable modulation method and transmission path estimation method in accordance with characteristics of the transmission information for improving the transmission efficiency operate so that at the transmission side, the ratio of adding transmission path estimation pilot symbols is suitably controlled in accordance with an aspect of the dat transmitted, for example, the size of the packets transmitted and the state of the transmission path, wherein the transmission data is mapped by the selected modulation method, and the signal is processed in accordance with the method of estimation of the transmission path, and the transmission signal is produced by inverse fast Fourier transform processing and transmitted. At the reception side, the received signal is fast Fourier transformed, the transmission path is estimated by the transmission path estimation method selected at the transmission side, the received signal is correct in accordance with result, and the received data is reproduced in accordance with the modulation method. Therefore, it is possible to always adopt the optimum transmission method in accordance with the attribute of the transmission data etc. and possible to realize an improvement of a transmission efficiency and an enhancement of the quality of communication.
    • 根据用于提高传输效率的传输信息的特性应用适当的调制方法和传输路径估计方法的发送装置,接收装置,通信系统和信号处理方法,使得在传输侧,比率 根据发送的数据包的数据的方面,例如发送的分组的大小和传输路径的状态,适当地控制添加传输路径估计导频符号的方法,其中通过所选择的调制方法映射传输数据,以及 根据传输路径的估计方法对信号进行处理,并且通过快速傅里叶逆变换处理产生发送信号并进行发送。 在接收端,接收信号进行快速傅立叶变换,通过在发送侧选择的发送路径估计方法估计发送路径,接收信号根据结果是正确的,接收到的数据根据 调制方式。 因此,可以始终采用根据传输数据等的属性的最佳传输方法,并且可以实现传输效率的提高和通信质量的提高。
    • 30. 发明授权
    • Transmitting apparatus, receiving apparatus, communication system, transmission method, reception method, and communication method
    • 发送装置,接收装置,通信系统,发送方法,接收方法和通信方法
    • US06882618B1
    • 2005-04-19
    • US09656152
    • 2000-09-06
    • Kazuyuki SakodaMitsuhiro Suzuki
    • Kazuyuki SakodaMitsuhiro Suzuki
    • H04J11/00H04B3/10H04L27/26
    • H04L27/2601
    • A transmitting apparatus, receiving apparatus, communication system, and a signal processing method for each apply a suitable modulation method and transmission path estimation method in accordance with the characteristics of the transmission information and capable of improving the transmission efficiency. At the transmission side, the method of estimation of the transmission path and the modulation method are selected in accordance with an attribute of the data to be transmitted, for example, the size of a packet to be transmitted, the transmission data is mapped by the selected modulation method, the signal is processed in accordance with the transmission path estimation method, and a transmission signal is created by increase fast Fourier transform processing and transmitted. At the reception side, the received signal is fast Fourier transformed, the transmission path is estimated by the transmission path estimation method selected at the transmission side, the received signal is corrected in accordance with the result, and the received data is reproduced in accordance with the modulation method. Therefore, it is possible to always adopt the optimum transmission method in accordance with the attribute of the transmission data etc. and possible to realize an improvement of a transmission efficiency and an enhancement of the quality of communication.
    • 一种发送装置,接收装置,通信系统和信号处理方法,用于根据传输信息的特性应用适当的调制方法和传输路径估计方法,并且能够提高传输效率。 在发送侧,根据要发送的数据的属性,例如要发送的分组的大小来选择传输路径的估计方法和调制方法,发送数据被映射到 选择的调制方法,根据传输路径估计方法对信号进行处理,并且通过增加快速傅立叶变换处理并发送来产生传输信号。 在接收侧,接收信号被快速傅立叶变换,通过在发送侧选择的传输路径估计方法估计传输路径,根据结果校正接收信号,并根据接收信号再现接收的数据 调制方式。 因此,可以始终采用根据传输数据等的属性的最佳传输方法,并且可以实现传输效率的提高和通信质量的提高。