会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Delay restricted channel estimation for multi-carrier systems
    • 多载波系统的延迟限制信道估计
    • US07551547B2
    • 2009-06-23
    • US11046192
    • 2005-01-28
    • Arunabha Ghosh
    • Arunabha Ghosh
    • H04J11/00
    • H04L27/2647H04L25/0216H04L25/022
    • A transmitted symbol matrix and a received symbol vector are transformed based on a non-identity transformation. The non-identity transformation is based on a finite spread of a channel impulse response in a time domain and is usable to improve accuracy of channel estimation in a frequency domain. A transformed channel vector is determined based on the transformed transmitted symbol matrix and the transformed received symbol vector using a channel estimation method. One or more elements in the transformed channel vector are suppressed to at or about zero. The suppressed, transformed channel vector is inverse transformed into an estimated channel vector based on the non-identity transformation.
    • 基于非标识变换来变换发送符号矩阵和接收符号向量。 非同一性变换基于时域中的信道脉冲响应的有限扩展,并且可用于提高频域中的信道估计的精度。 使用信道估计方法,基于变换的发送符号矩阵和变换的接收符号向量来确定变换信道向量。 经变换的信道向量中的一个或多个元素被抑制到或大约为零。 抑制的,变换的信道向量被逆变换为基于非同一性变换的估计信道向量。
    • 7. 发明授权
    • Soft bit viterbi equalizer using partially collapsed metrics
    • 软位维特比均衡器使用部分折叠度量
    • US07450668B2
    • 2008-11-11
    • US11049370
    • 2005-02-02
    • Arunabha GhoshRichard A. Kobylinski
    • Arunabha GhoshRichard A. Kobylinski
    • H04L27/06H03M13/03
    • H04L25/03318H03M13/23H03M13/4107H03M13/6362H04L25/03197H04L2025/03401
    • First and second partially collapsed metric values are determined for each bit in a symbol transition. Each first partially collapsed metric value is a cumulative metric of starting in a first state and ending in a second state in L transitions with the respective bit in the symbol transition being a first value. Each second partially collapsed metric value is a cumulative metric of starting in the first state and ending in the second state in L transitions with the respective bit in the symbol transition being a second value, the second value differing from the first value. For each bit in the symbol transition, a relative likelihood value is determined based on its respective first and second partially collapsed metric values. A symbol is decoded based on a hard decision performed using the relative likelihood value for each bit in the symbol transition.
    • 为符号转换中的每个位确定第一和第二部分折叠度量值。 每个第一部分折叠的度量值是在第一状态中开始并在L个转换中以第二状态结束的累积度量,其中符号转换中的相应位是第一值。 每个第二部分折叠度量值是在第一状态中开始并在L个转换中以第二状态结束的累积度量,其中符号转换中的相应位是第二值,第二值与第一值不同。 对于符号转换中的每个位,基于其相应的第一和第二部分折叠度量值来确定相对似然值。 基于使用符号转换中的每个位的相对似然值执行的硬判决来对符号进行解码。
    • 8. 发明申请
    • System and method for controlling performance of a RFID network
    • 控制RFID网络性能的系统和方法
    • US20070080783A1
    • 2007-04-12
    • US11248761
    • 2005-10-11
    • Arunabha GhoshAnil Doradla
    • Arunabha GhoshAnil Doradla
    • H04Q5/22H04J3/08
    • H01Q1/2208
    • A system and method for controlling the performance of a RFID network comprising a plurality of RFID tags and a central unit is disclosed. Each of the plurality of RFID tags is operative to transmit a data packet comprising a unique identification for that RFID tag. Additionally, each RFID tag is operative to receive a data packet from another RFID tag of the plurality of RFID tags, make a random determination based on a probability whether to re-transmit the data packet, and re-transmit the received data packet dependent on the random determination. The central unit in communication with the plurality of RFID tags is operative to receive the data packets from the plurality of RFID tags.
    • 公开了一种用于控制包括多个RFID标签和中央单元的RFID网络的性能的系统和方法。 多个RFID标签中的每一个可操作地发送包括该RFID标签的唯一标识的数据分组。 另外,每个RFID标签可操作以从多个RFID标签的另一个RFID标签接收数据包,基于是否重传数据包的概率进行随机确定,并且依赖于 随机确定。 与多个RFID标签通信的中央单元可操作以从多个RFID标签接收数据分组。
    • 9. 发明申请
    • Soft bit Viterbi equalizer using partially collapsed metrics
    • 软位维特比均衡器使用部分折叠度量
    • US20060171489A1
    • 2006-08-03
    • US11049370
    • 2005-02-02
    • Arunabha GhoshRichard Kobylinski
    • Arunabha GhoshRichard Kobylinski
    • H03D1/00
    • H04L25/03318H03M13/23H03M13/4107H03M13/6362H04L25/03197H04L2025/03401
    • First and second partially collapsed metric values are determined for each bit in a symbol transition. Each first partially collapsed metric value is a cumulative metric of starting in a first state and ending in a second state in L transitions with the respective bit in the symbol transition being a first value. Each second partially collapsed metric value is a cumulative metric of starting in the first state and ending in the second state in L transitions with the respective bit in the symbol transition being a second value, the second value differing from the first value. For each bit in the symbol transition, a relative likelihood value is determined based on its respective first and second partially collapsed metric values. A symbol is decoded based on a hard decision performed using the relative likelihood value for each bit in the symbol transition.
    • 为符号转换中的每个位确定第一和第二部分折叠度量值。 每个第一部分折叠的度量值是在第一状态中开始并在L个转换中以第二状态结束的累积度量,其中符号转换中的相应位是第一值。 每个第二部分折叠度量值是在第一状态中开始并在L个转换中以第二状态结束的累积度量,其中符号转换中的相应位是第二值,第二值与第一值不同。 对于符号转换中的每个位,基于其相应的第一和第二部分折叠度量值来确定相对似然值。 基于使用符号转换中的每个位的相对似然值执行的硬判决来对符号进行解码。