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    • 2. 发明申请
    • MUTUAL AUTHENTICATION METHOD FOR USE IN A WIRELESS SENSOR NETWORK
    • 用于无线传感器网络的相互认证方法
    • WO2015080552A1
    • 2015-06-04
    • PCT/MY2014/000131
    • 2014-05-29
    • MIMOS BERHAD
    • SARWAR, UsmanKAMALURRADAT, Zeldi SuryadySINNIAH, Gopinath RaoKHOSHDELNIAT, Reza
    • H04W12/06H04W84/18
    • H04W12/06H04L63/0869H04W84/18
    • Described herein is an authentication method that enables a new node (400) to join a wireless sensor network, which comprises a plurality of authenticating nodes (200) that previously has joined the wireless sensor network in a proper network configured security setup, by having the new node (400) and each authenticating node (200) to mutually authenticate each other. In general, the new node (400) requests to join the wireless sensor network and thereby instigating each authenticating node (200) that is nearby to the new node (400) to authenticate the new node (400). Once the new node (400) has been successfully authenticated, the new node (400) will proceed to authenticate each authenticating node (200) that is involved in the authentication process. Thereafter, the new node (400) is allowed to join the wireless sensor network, provided that each authenticating node (200) has also been successfully authenticated by the new node (400).
    • 这里描述了一种认证方法,其使新节点(400)能够加入无线传感器网络,该无线传感器网络包括先前已经通过适当的网络配置的安全设置加入无线传感器网络的多个认证节点(200) 新节点(400)和每个认证节点(200)互相认证。 通常,新节点(400)请求加入无线传感器网络,从而煽动邻近新节点(400)的每个认证节点(200)来认证新节点(400)。 一旦新节点(400)已被成功认证,则新节点(400)将继续认证认证过程中涉及的每个认证节点(200)。 此后,新节点(400)被允许加入无线传感器网络,只要每个认证节点(200)也已被新节点(400)成功认证。
    • 5. 发明申请
    • AN ARCHITECTURE FRAMEWORK
    • 一个架构框架
    • WO2015076661A1
    • 2015-05-28
    • PCT/MY2014/000133
    • 2014-05-29
    • MIMOS BERHAD
    • KAMALURRADAT, Zeldi SuryadySINNIAH, Gopinath RaoSARWAR, UsmanKHOSHDELNIAT, RezaHASEEB, Shariq
    • H04L29/08H04L29/06
    • H04L67/16H04L63/0823H04W4/70
    • The present invention relates to a system and method of an architecture framework incorporating objects of loT. The architecture framework is characterized by: a first horizontal tier, comprising a communication protocol (101); a second horizontal tier, comprising a service protocol (200); wherein the second horizontal tier further comprises: a first vertical tier comprising service consumer (210); a second vertical tier comprising a service provider (220); a third vertical tier comprising a service broker (230); and a forth vertical tier comprising an object provider (240). The method for providing the architecture framework characterized by the steps of: creating service abstraction from a plurality of objects (11); defining the service abstraction into object abstraction to be advertised (12); authenticating the object abstraction and the respective service provider (220) and service abstraction (13); providing a request from the service consumer (210) to access the service abstraction (14); authenticating the service consumer (210) and the request (15); generating a certificate of the service abstraction to the service provider (220) and service consumer (210) (16); forwarding the service abstraction to the service consumer (210) (17); and validating the service abstraction (18).
    • 本发明涉及一种结合loT对象的架构框架的系统和方法。 该架构框架的特征在于:包括通信协议(101)的第一水平层; 第二水平层,包括服务协议(200); 其中所述第二水平层还包括:包括服务使用者(210)的第一垂直层; 包括服务提供商(220)的第二垂直层; 包括服务代理(230)的第三垂直层; 以及包括对象提供者(240)的第四垂直层。 提供该架构框架的方法,其特征在于以下步骤:从多个对象(11)创建服务抽象; 将服务抽象定义为要宣传的对象抽象(12); 验证对象抽象和相应的服务提供商(220)和服务抽象(13); 提供来自所述服务消费者(210)的访问所述服务抽象(14)的请求; 验证服务消费者(210)和请求(15); 生成服务抽象的证书给服务提供者(220)和服务使用者(210)(16); 将服务抽象转发到服务消费者(210)(17); 并验证服务抽象(18)。
    • 6. 发明申请
    • NETWORK SYSTEM AND METHOD FOR ENABLING A MOBILE DEVICE TO SELF-CONFIGURE WITHOUT USER INTERVENTION
    • 网络系统和方法,用于在没有用户干预的情况下实现自动配置的移动设备
    • WO2015183068A1
    • 2015-12-03
    • PCT/MY2015/000034
    • 2015-05-13
    • MIMOS BERHAD
    • SINNIAH, Gopinath RaoSARWAR, UsmanKAMALURRADAT, Zeldi SuryadyASHRAF, Qazi Mamoon
    • H04M3/42G06F9/445H04M3/487H04W8/20
    • H04W8/20H04M1/72525H04M3/42136
    • The present invention relates to a network system (10) and a method for enabling a mobile device (100) to self-configure without user intervention. The network system comprises a mobile device (100), a gateway device (200), and a service provider device (300). In the mobile device (100), there are at least four main modules, while in the gateway device (200), there are at least five main modules and in the service provider device (300), there is at least one main module, wherein all modules operate in the network system (10) to achieve a network system (10) that ensures the mobile device (100) is able to self-configure its functionality without user intervention based on services provided by the gateway device (200) in the network system (10). The operation of the modules is also disclosed in the method of the present invention to achieve the self-configuration without user intervention.
    • 本发明涉及一种网络系统(10)和一种使移动设备(100)在没有用户干预的情况下自配置的方法。 网络系统包括移动设备(100),网关设备(200)和服务提供商设备(300)。 在移动设备(100)中,至少有四个主要模块,而在网关设备(200)中,至少有五个主要模块,并且在服务提供商设备(300)中,至少有一个主要模块, 其中所有模块在所述网络系统(10)中操作以实现网络系统(10),其确保所述移动设备(100)能够基于由所述网关设备(200)提供的服务而无需用户干预来自行配置其功能 网络系统(10)。 在本发明的方法中还公开了模块的操作,以在没有用户干预的情况下实现自配置。