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    • 3. 发明申请
    • ALKALINE BATTERY SEPARATOR AND ALKALINE BATTERY USING SEPARATOR
    • 碱性电池分离器和使用分离器的碱性电池
    • US20130183569A1
    • 2013-07-18
    • US13823128
    • 2011-09-06
    • Tomohiro HayakawaKoichi KambeHiroyuki Kawai
    • Tomohiro HayakawaKoichi KambeHiroyuki Kawai
    • H01M2/16
    • H01M2/1626H01M2/1613H01M2/1633H01M2/1686H01M10/24
    • Provided are an alkaline battery separator and an alkaline battery including the separator. The separator includes at least a coarse layer and a dense layer denser than the coarse layer. The coarse layer contains an alkaline-resistant cellulose fiber having a freeness value of 350 to 650 ml as a whole in the proportion of 25 to 65% by weight. The alkaline-resistant cellulose fiber includes at least two kinds of alkaline-resistant cellulose fibers having different freeness with each other. The difference in freeness value between the alkaline-resistant cellulose fibers having the highest and lowest freeness values is 300 to 700 ml. The dense layer contains an alkaline-resistant cellulose fiber which as a whole has a freeness value of 0 to 400 ml. The separator has a maximum pore size of 65 μm or smaller, and a liquid absorption capacity of 5 g/g or higher.
    • 提供了一种碱性电池隔板和包括隔膜的碱性电池。 分离器至少包括粗糙层和比粗糙层更致密的致密层。 该粗糙层含有比例为25〜65重量%的游离度350〜650ml的耐碱性纤维素纤维。 耐碱性纤维素纤维包含至少两种互不相同游离度的耐碱性纤维素纤维。 具有最高和最低游离度值的耐碱性纤维素纤维之间的游离度差值为300至700ml。 致密层含有耐碱纤维素纤维,整体上其游离度为0-400ml。 隔膜的最大孔径为65μm以下,液体吸收容量为5g / g以上。
    • 5. 发明授权
    • MIMO multiplexing communication system and a signal separation method
    • MIMO复用通信系统和信号分离方法
    • US07864897B2
    • 2011-01-04
    • US11909607
    • 2006-03-20
    • Noriyuki MaedaHiroyuki KawaiKenichi HiguchiMamoru Sawahashi
    • Noriyuki MaedaHiroyuki KawaiKenichi HiguchiMamoru Sawahashi
    • H04L27/06H04L23/02
    • H04B7/0413H04L25/0204H04L25/0228H04L25/0246H04L25/03191H04L25/03242H04L2025/03426
    • A disclosed receiver in a MIMO multiplexing communication system, in which plural signals are simultaneously transmitted from plural transmitting antenna branches using the same frequency, and the transmitted signals are retrieved by receiving signals at plural receiving antennas, separating the received signals and searching for proper symbol metrics for each branch, comprises a QR decomposer for QR decomposing the received signals to orthogonalize the transmitted signals; a symbol replica candidate ranking unit for subtracting surviving symbol replica candidates from the QR decomposed received signals to get remaining received signals and rank the remaining signals in the increasing order of expected branch metrics of the remaining received signals; a symbol replica candidate selector for selecting symbol replica candidates in the ranked order; a branch metric calculator for calculating the branch metrics of the selected symbol replica candidates; and a threshold comparator for comparing the calculated branch metrics with a predetermined threshold; wherein if a calculated branch metric is larger than the predetermined threshold, the branch metric and successive branch metrics are deleted without further searching.
    • 在MIMO复用通信系统中公开的接收机,其中使用相同频率从多个发送天线分支同时发送多个信号,并且通过在多个接收天线处接收信号来检索所发送的信号,分离接收的信号并搜索适当的符号 每个分支的度量包括QR分解器,用于QR分解接收的信号以使发送的信号正交化; 符号复制候选排​​序单元,用于从所述QR分解的接收信号中减去剩余码元复制候选,以获得剩余的接收信号,并以剩余接收信号的预期分支度量的递增顺序对剩余信号进行排序; 用于以排序顺序选择符号复本候选者的符号复制候选选择器; 分支度量计算器,用于计算所选择的符号复本候选的分支度量; 以及阈值比较器,用于将所计算的分支度量与预定阈值进行比较; 其中如果所计算的分支度量大于所述预定阈值,则所述分支度量和连续分支度量被删除而不进一步搜索。
    • 9. 发明申请
    • Fuel Cell System
    • 燃料电池系统
    • US20090068516A1
    • 2009-03-12
    • US12087314
    • 2007-02-02
    • Hiroyuki Kawai
    • Hiroyuki Kawai
    • H01M8/04H01M8/24
    • H01M8/04074H01M8/0267H01M8/04007H01M8/04067H01M8/04223H01M8/04268H01M8/241H01M8/2425H01M8/2475H01M2008/1095
    • A fuel cell system has a fuel cell stack (12) including a plurality of fuel cells that are stacked together, a heat transfer layer (14) that covers the fuel cell stack (12) and is formed at its periphery with recesses, and a low heat transfer layer (16) disposed in each of the recesses and having a low thermal conductivity. The low heat transfer layer (16) is fixed to a casing (18) such that the low heat transfer layer (16) closely contacts with the heat transfer layer (14) when the fuel cell stack (12) reaches its normal operating temperature, and such that the low heat transfer layer (16) is spaced apart from the heat transfer layer (14) due to thermal contraction during a process in which the temperature of the fuel cell stack (12) decreases from the normal operating temperature to the ambient temperature.
    • 燃料电池系统具有包括堆叠在一起的多个燃料电池的燃料电池堆(12),覆盖燃料电池堆(12)并在其周边形成凹部的传热层(14),以及 低传热层(16)设置在每个凹部中并且具有低导热性。 当燃料电池堆(12)达到其正常工作温度时,低传热层(16)固定到壳体(18),使得低传热层(16)与传热层(14)紧密接触, 并且使得在燃料电池堆(12)的温度从正常工作温度降低到环境的过程中,由于热收缩,低传热层(16)与传热层(14)间隔开 温度。