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    • 1. 发明授权
    • Method and system for efficient synchronization in a wireless communication system
    • 无线通信系统中有效同步的方法和系统
    • US08385256B2
    • 2013-02-26
    • US12332935
    • 2008-12-11
    • Praveen KumarViswanatha Rao Thumparthy
    • Praveen KumarViswanatha Rao Thumparthy
    • H04B7/212
    • H04J3/0644H04L7/041
    • Embodiments herein provide a method and system for synchronization in a Wireless Communication Network using a new frame, Synchronization Frame (SF), and a configurable length of the same that is transmitted from a Network Controller (NC) to the Network Elements (NEs) in the network. The periodicity of the SF could be changed, to align with the data exchange periodicity, while still keeping synchronization. The length of the SF is made configurable to achieve this effect. It is directly proportional to the period, with which it needs to be transmitted, i.e., a larger delay between two SFs is achievable through the use of a larger SF frame size. This method provides a mechanism in which synchronization between the NC and NEs is achieved by listening to only a part of the SF, which is constant in size. This method also provides tolerance to failure by using acknowledgement schemes.
    • 本文的实施例提供了一种在无线通信网络中使用新帧同步帧(SF)以及从网络控制器(NC)向网络元件(NE)发送的可配置长度的同步的方法和系统 网络。 可以改变SF的周期性,以便与数据交换周期保持一致,同时保持同步。 SF的长度可配置为实现此效果。 它与需要发送的周期成正比,即通过使用较大的SF帧大小可实现两个SF之间较大的延迟。 该方法提供了通过仅监听大小不变的SF的一部分来实现NC和NE之间的同步的机制。 该方法还通过使用确认方案提供了对故障的容忍。
    • 2. 发明申请
    • METHOD AND SYSTEM FOR EFFICIENT SYNCHRONIZATION IN A WIRELESS COMMUNICATION SYSTEM
    • 无线通信系统中有效同步的方法与系统
    • US20090161653A1
    • 2009-06-25
    • US12332935
    • 2008-12-11
    • Praveen KUMARViswanatha Rao Thumparthy
    • Praveen KUMARViswanatha Rao Thumparthy
    • H04J3/06
    • H04J3/0644H04L7/041
    • Embodiments herein provide a method and system for synchronization in a Wireless Communication Network using a new frame, Synchronization Frame (SF), and a configurable length of the same that is transmitted from a Network Controller (NC) to the Network Elements (NEs) in the network. The periodicity of the SF could be changed, to align with the data exchange periodicity, while still keeping synchronization. The length of the SF is made configurable to achieve this effect. It is directly proportional to the period, with which it needs to be transmitted, i.e., a larger delay between two SFs is achievable through the use of a larger SF frame size. This method provides a mechanism in which synchronization between the NC and NEs is achieved by listening to only a part of the SF, which is constant in size. This method also provides tolerance to failure by using acknowledgement schemes.
    • 本文的实施例提供了一种在无线通信网络中使用新帧同步帧(SF)以及从网络控制器(NC)向网络元件(NE)发送的可配置长度的同步的方法和系统 网络。 可以改变SF的周期性,以便与数据交换周期保持一致,同时保持同步。 SF的长度可配置为实现此效果。 它与需要发送的周期成正比,即通过使用较大的SF帧大小可实现两个SF之间较大的延迟。 该方法提供了通过仅监听大小不变的SF的一部分来实现NC和NE之间的同步的机制。 该方法还通过使用确认方案提供了对故障的容忍。
    • 3. 发明申请
    • Multiparty Controlled Remote Security Lock System
    • 多方控制远程安全锁系统
    • US20120169460A1
    • 2012-07-05
    • US13045107
    • 2011-03-10
    • Viswanatha Rao Thumparthy
    • Viswanatha Rao Thumparthy
    • G06F7/04
    • G07C9/00563G07C9/00087G07C2009/00095
    • A multiparty controlled remote security lock is disclosed. The embodiments herein relate to security systems and, more particularly, to remotely controlled biometric based mechanisms in security systems. In order to operate the remote security lock at least one OC and a plurality of RCs are employed. Further, the OC is located at the site of the lock and the RCs may be located away from the site of the lock. The remote security lock employs 2-factor authentication mechanisms using smartcard access and biometric means. A method for randomized selection of a subset of controllers (RCs) who operate the lock is used. The randomization enhances the scalability of the system, while keeping the security strength of the system as that of choosing the full set of controllers for operating the lock.
    • 公开了一个多方控制的远程安全锁。 本文的实施例涉及安全系统,更具体地,涉及安全系统中基于远程控制的基于生物特征的机制。 为了操作远程安全锁,采用至少一个OC和多个RC。 此外,OC位于锁的位置,并且RC可以位于远离锁的位置。 远程安全锁使用智能卡访问和生物识别手段的双因素认证机制。 使用用于随机选择操作锁的控制器(RC)子集的方法。 随机化增强了系统的可扩展性,同时保持了系统的安全性,就像选择用于操作锁的全套控制器一样。
    • 4. 发明申请
    • USER MANAGED NUMBER PRIVACY AND CALL ACCESSIBILITY
    • 用户管理的数字隐私和呼叫可访问性
    • US20130259229A1
    • 2013-10-03
    • US13536020
    • 2012-06-28
    • Viswanatha Rao Thumparthy
    • Viswanatha Rao Thumparthy
    • H04W12/04
    • H04W12/02H04M2203/6009
    • A system and method for maintaining privacy of a user's telephone number is disclosed. The method provides a means by which a user A may prefer to exchange her contact number with another user B. The contact number is encrypted by user A and passed on to the mobile phone of user B. In the phonebook of user B, the contact number of user A is stored in encrypted format. Further, when user B initiates a call to user A, the encrypted number is sent to the network. At the MSC of user B, the number is decrypted and a call is established with user A. When user A calls user B, user A's number is encrypted at user B's MSC. This is transmitted to user B, where it is compared with the already encrypted number in the phonebook. The matching name of user A is then displayed.
    • 公开了一种用于维护用户电话号码隐私的系统和方法。 该方法提供了一种用户A可能更喜欢与另一用户B交换她的联系号码的方式。该联系人号由用户A加密并传递给用户B的移动电话。在用户B的电话簿中,联系人 用户A的数量以加密格式存储。 此外,当用户B发起对用户A的呼叫时,将加密的号码发送到网络。 在用户B的MSC处,该号码被解密,并且与用户A建立呼叫。当用户A呼叫用户B时,用户A的号码在用户B的MSC处被加密。 这被传送到用户B,在那里与电话簿中已经加密的号码进行比较。 然后显示用户A的匹配名称。
    • 5. 发明授权
    • User managed number privacy and call accessibility
    • 用户管理号码隐私和呼叫可访问性
    • US09565556B2
    • 2017-02-07
    • US13536020
    • 2012-06-28
    • Viswanatha Rao Thumparthy
    • Viswanatha Rao Thumparthy
    • H04K1/00H04W12/02
    • H04W12/02H04M2203/6009
    • A system and method for maintaining privacy of a user's telephone number is disclosed. The method provides a means by which a user A may prefer to exchange her contact number with another user B. The contact number is encrypted by user A and passed on to the mobile phone of user B. In the phonebook of user B, the contact number of user A is stored in encrypted format. Further, when user B initiates a call to user A, the encrypted number is sent to the network. At the MSC of user B, the number is decrypted and a call is established with user A. When user A calls user B, user A's number is encrypted at user B's MSC. This is transmitted to user B, where it is compared with the already encrypted number in the phonebook. The matching name of user A is then displayed.
    • 公开了一种用于维护用户电话号码隐私的系统和方法。 该方法提供了一种用户A可能更喜欢与另一用户B交换她的联系号码的方式。该联系人号由用户A加密并传递给用户B的移动电话。在用户B的电话簿中,联系人 用户A的数量以加密格式存储。 此外,当用户B发起对用户A的呼叫时,将加密的号码发送到网络。 在用户B的MSC处,该号码被解密,并且与用户A建立呼叫。当用户A呼叫用户B时,用户A的号码在用户B的MSC处被加密。 这被传送到用户B,在那里与电话簿中已经加密的号码进行比较。 然后显示用户A的匹配名称。
    • 6. 发明授权
    • Multiparty controlled remote security lock system
    • 多方控制远程安全锁系统
    • US08648694B2
    • 2014-02-11
    • US13045107
    • 2011-03-10
    • Viswanatha Rao Thumparthy
    • Viswanatha Rao Thumparthy
    • G08C19/00
    • G07C9/00563G07C9/00087G07C2009/00095
    • A remotely controlled biometric based mechanism for security systems includes a remote security lock and uses an Onsite Controller (OC) and a plurality of Remote Controllers (RCs). Further, the OC is located at the site of the lock and the RCs may be located away from the site of the lock. The remote security lock employs 2-factor authentication mechanisms using smartcard access and biometric inputs. Randomized selection of a subset of controllers (RCs) who operate the lock is performed. The randomization enhances the scalability of the system, while keeping the security strength of the system as that of choosing the full set of controllers for operating the lock. A measure for determining the security level is also included, where the measure chosen is the number of controls that need to be broken to gain access to the controlled resource.
    • 用于安全系统的基于远程控制的基于生物特征的机制包括远程安全锁并使用现场控制器(OC)和多个遥控器(RC)。 此外,OC位于锁的位置,并且RC可以位于远离锁的位置。 远程安全锁使用智能卡访问和生物识别输入的双因素认证机制。 执行操作锁的控制器(RC)子集的随机选择。 随机化增强了系统的可扩展性,同时保持了系统的安全性,就像选择用于操作锁的全套控制器一样。 还包括用于确定安全级别的措施,其中所选择的措施是需要被破坏以控制资源的访问的控制的数量。