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    • 1. 发明授权
    • Method and system for last gasp device detection
    • 最后一个喘气装置检测方法和系统
    • US09088994B2
    • 2015-07-21
    • US13601692
    • 2012-08-31
    • Dorin ViorelAkira Ito
    • Dorin ViorelAkira Ito
    • H04W24/00H04W74/08H04L29/14
    • H04W74/0841H04L69/40
    • A method is provided for device detection by a base station comprising receiving a plurality of signals over a preamble subframe from an endpoint. The plurality of signals are attempting to access an access group of the preamble subframe. Additionally, the plurality of signals are received on a random access channel using a wireless network. Further, the plurality of signals have a plurality of last gasp messages (LGMs). The method additionally comprises determining an allowable rate of collisions for the plurality of signals and determining an actual rate of collisions for the plurality of signals. The method includes increasing the size of the access group allocated to the plurality of signals having the plurality of LGMs, based on whether the actual rate of collisions exceeds the allowable rate of collisions.
    • 提供了一种用于由基站进行设备检测的方法,包括:从端点通过前导码子帧接收多个信号。 多个信号正试图访问前同步码子帧的接入组。 另外,使用无线网络在随机接入信道上接收多个信号。 此外,多个信号具有多个最后的喘气信息(LGM)。 该方法还包括确定多个信号的可允许冲突率并确定多个信号的实际碰撞速率。 该方法包括:基于实际的冲突率是否超过允许的冲突率,增加分配给具有多个LGM的多个信号的接入组的大小。
    • 2. 发明申请
    • METHOD AND SYSTEM FOR LAST GASP DEVICE IDENTIFICATION
    • 用于最后气体装置鉴定的方法和系统
    • US20140064110A1
    • 2014-03-06
    • US13601653
    • 2012-08-31
    • Dorin ViorelAkira Ito
    • Dorin ViorelAkira Ito
    • H04W24/00
    • H04W8/005H04W4/70H04W74/085
    • A method for device identification includes determining a mass event has occurred in a wireless network from a reception of a plurality of signals each having a last gasp message, sampling a plurality of mapped zones associated with a base station, identifying which mapped zones are associated with a disconnected endpoint in a zone list, determining a length of time of the mass event, and selectively providing the zone list to identify disconnected endpoints based at least upon the length of time of the mass event. Each mapped zone includes a plurality of wireless device endpoints associated with the mapped zone. The sampling includes determining whether any of a subset of the endpoints associated with the given mapped zone are disconnected from the wireless network.
    • 一种用于设备识别的方法包括:从接收到具有最后喘振消息的多个信号中确定在无线网络中发生的质量事件,对与基站相关联的多个映射区域进行采样,识别哪些映射区域与 区段列表中的断开的端点,确定质量事件的时间长度,以及至少基于质量事件的时间长度,选择性地提供区域列表以识别断开的端点。 每个映射区域包括与映射区域相关联的多个无线设备端点。 采样包括确定与给定映射区域相关联的端点的子集中的任一个是否与无线网络断开连接。
    • 3. 发明申请
    • METHOD AND SYSTEM FOR LAST GASP DEVICE DETECTION
    • 用于最后气体装置检测的方法和系统
    • US20140064111A1
    • 2014-03-06
    • US13601692
    • 2012-08-31
    • Dorin ViorelAkira Ito
    • Dorin ViorelAkira Ito
    • H04W24/00
    • H04W74/0841H04L69/40
    • A method is provided for device detection by a base station comprising receiving a plurality of signals over a preamble subframe from an endpoint. The plurality of signals are attempting to access an access group of the preamble subframe. Additionally, the plurality of signals are received on a random access channel using a wireless network. Further, the plurality of signals have a plurality of last gasp messages (LGMs). The method additionally comprises determining an allowable rate of collisions for the plurality of signals and determining an actual rate of collisions for the plurality of signals. The method includes increasing the size of the access group allocated to the plurality of signals having the plurality of LGMs, based on whether the actual rate of collisions exceeds the allowable rate of collisions.
    • 提供了一种用于由基站进行设备检测的方法,包括:从端点通过前导码子帧接收多个信号。 多个信号正试图访问前同步码子帧的接入组。 另外,使用无线网络在随机接入信道上接收多个信号。 此外,多个信号具有多个最后的喘气信息(LGM)。 该方法还包括确定多个信号的可允许冲突率并确定多个信号的实际碰撞速率。 该方法包括:基于实际的冲突率是否超过允许的冲突率,增加分配给具有多个LGM的多个信号的接入组的大小。
    • 4. 发明授权
    • Method and system for last gasp device identification
    • 最后一个喘气装置识别的方法和系统
    • US08867396B2
    • 2014-10-21
    • US13601653
    • 2012-08-31
    • Dorin ViorelAkira Ito
    • Dorin ViorelAkira Ito
    • H04L12/26
    • H04W8/005H04W4/70H04W74/085
    • A method for device identification includes determining a mass event has occurred in a wireless network from a reception of a plurality of signals each having a last gasp message, sampling a plurality of mapped zones associated with a base station, identifying which mapped zones are associated with a disconnected endpoint in a zone list, determining a length of time of the mass event, and selectively providing the zone list to identify disconnected endpoints based at least upon the length of time of the mass event. Each mapped zone includes a plurality of wireless device endpoints associated with the mapped zone. The sampling includes determining whether any of a subset of the endpoints associated with the given mapped zone are disconnected from the wireless network.
    • 一种用于设备识别的方法包括:从接收到具有最后喘振消息的多个信号中确定在无线网络中发生的质量事件,对与基站相关联的多个映射区域进行采样,识别哪些映射区域与 区段列表中的断开的端点,确定质量事件的时间长度,以及至少基于质量事件的时间长度,选择性地提供区域列表以识别断开的端点。 每个映射区域包括与映射区域相关联的多个无线设备端点。 采样包括确定与给定映射区域相关联的端点的子集中的任何一个是否与无线网络断开连接。
    • 8. 发明授权
    • Field transistor structure manufactured using gate last process
    • 使用门最后工艺制造的场晶体管结构
    • US08841674B2
    • 2014-09-23
    • US13174083
    • 2011-06-30
    • Chao-Yang LuGuang-Jye ShiauAkira Ito
    • Chao-Yang LuGuang-Jye ShiauAkira Ito
    • H01L29/78H01L21/28
    • H01L29/7839G11C17/16
    • According to embodiments of the invention, a field transistor structure is provided. The field transistor structure includes a semiconductor substrate, a metal gate, a polycrystalline silicon (polysilicon) layer, and first and second metal portions. The polysilicon layer has first, second, third, and fourth sides and is disposed between the semiconductor substrate on the first side and the metal gate on the second side. The polysilicon layer is also disposed between the first and second metal portions on the third and fourth sides. According to some embodiments of the present invention, the field transistor structure may also include a thin metal layer disposed between the polysilicon layer and the semiconductor substrate. The thin metal layer may be electronically coupled to each of the first and second metal portions.
    • 根据本发明的实施例,提供了场晶体管结构。 场晶体管结构包括半导体衬底,金属栅极,多晶硅(多晶硅)层以及第一和第二金属部分。 多晶硅层具有第一,第二,第三和第四边,并且设置在第一侧的半导体衬底和第二侧上的金属栅极之间。 多晶硅层也设置在第三和第四侧上的第一和第二金属部分之间。 根据本发明的一些实施例,场晶体管结构还可以包括设置在多晶硅层和半导体衬底之间的薄金属层。 薄金属层可以电连接到第一和第二金属部分中的每一个。