Abstract:
A method of setting a route for effective data transmission in a sensor network including a movable sink node and a plurality of sensor nodes which collect data requested by the movable sink node, the method including: transmitting an agent requesting message from the movable sink node to the sensor nodes; receiving a first agent acceptance message from a first sensor node of the sensor nodes; and selecting, as an agent node, the first sensor node. By using the sensor nodes which are static, the number of data transmission can be saved, thereby reducing power consumption in the respective sensor nodes and also preventing retardation of data transmission.
Abstract:
A wireless ad-hoc network for transmitting packets to target regions, and a packet transmission method thereof, are provided. The ad-hoc network includes at least one relay node for receiving a packet containing location information of at least two target regions each including at least one node, separating the received packet by the location information, forming a new packet for each instance of the location information separated from the received packet, and forwarding the new packets to corresponding target regions; and a source node for generating the packet containing the location information and transmitting the packet to the relay node. The present invention can reduce the packet transmission overhead, the packet transmission delay, and the power required for the packet transmission. Therefore, the packets can be delivered to the target regions in an efficient manner.
Abstract:
Provided are a reference voltage generating circuit and an internal voltage generating circuit for controlling an internal voltage level, where the reference voltage generating circuit includes a distributing unit, a clamping control unit, and a control unit; the distributing unit has a voltage level lower than that of an external power supply voltage in response to the external power supply voltage, and outputs via an output terminal a reference voltage which varies according to an operating mode; the clamping control unit is connected between the output terminal and a ground voltage, and clamps the voltage level of the reference voltage at a constant level in response to a control voltage having a voltage level which is lower than that of the reference voltage; the control unit increases or decreases the voltage level of the reference voltage in response to first and second operating mode signals; the control unit includes a first control transistor and a second control transistor; and the reference voltage generating circuit controls a reference voltage level according to an operating mode of the semiconductor memory device such that the operating characteristics of the semiconductor memory device can be improved in some operating modes and power dissipation can be minimized in other operating modes.
Abstract:
A hand-off method including detecting edge nodes located at edges of a mobile ad-hoc network (MANET); retransmitting, at the detected edge nodes, an Internet gateway advertisement message (IGAM) at a new period; and performing a hand-off of a mobile device moving from an infrastructure network to the MANET using the retransmitted IGAM.
Abstract:
In general, an Internet gateway assigns an address to a node of an ad-hoc network on receipt of request for an address assignment. However, a load exerted to the Internet gateway increases. Accordingly, one (proxy node) of the nodes of an ad-hoc network can serve as a proxy node to perform an address assignment function of the Internet gateway. That is, if a node of the ad-hoc node does not receive an advertisement message, it requests the Internet gateway for address assignment to perform the proxy node function. The node is assigned with at least two addresses from the Internet gateway, and then assigns the address to the requesting node. Accordingly, a load exerted to the Internet gateway can be reduced.
Abstract:
A method and apparatus for handover based on a dynamic beamforming scheme, which is adapted to a mobile communication system including a mobile node and a base station, is provided. The apparatus includes a mobile profile information processor configured to process mobile profile information based on a location of the mobile node, and to generate a beamforming control signal according to the mobile profile information; a handover indication message processor configured to generate a first handover indication message incorporating the mobile profile information in preparation for a handover of the mobile node; a transceiver configured to transmit the first handover indication message; and a beamforming controller configured to control beamforming for transmission of the transceiver according to the beamforming control signal.
Abstract:
A method for assigning a global address to a node in an ad-hoc network is provided. A joining node to the ad-hoc network generates a local address using its MAC address. The joining node inquires of its one-hop nodes about whether they occupy a local address that is the same as the generated local address. When the joining node is informed that there are no nodes occupying the same local address, it generates a global address using the generated local address and a global prefix provided from neighbor nodes. The joining node inquires of an Internet gateway about whether the generated global address is currently used. When the joining node is informed that there are no nodes currently using the same global address, the joining node is assigned the generated global address. Further, the joining node and the Internet gateway communicate messages via a relay node using a tunneling.
Abstract:
A method, medium, and system for connecting to a communication system in a network having a plurality of nodes capable of communicating with each other. The node requests an identifier to a foreign network when a router advertise (RA) message is received from the foreign network, and then the node connects to the communication system, via the foreign network, by use of the received identifier. A method, medium, and system for delegating a network identifier (prefix) from a server of a foreign network, in a network having a plurality of nodes capable of communicating with each other, so that a node can communicate with the foreign network. The prefix to be used by the nodes in the network is transmitted from the server of the foreign network to the node.
Abstract:
A method of electing a leader node in an ad-hoc network including a plurality of nodes in the ad-hoc network transmitting node solicitation (NS) messages and calculating distances between the plurality of nodes using information included in the NS messages, determining whether the plurality of nodes are candidate leaders by calculating center position values based on the distances calculated by each of the nodes, and electing the leader node based on information included in leader election option messages transmitted by each candidate leader.
Abstract:
An ad-hoc network for routing extension by supporting the IPv6 protocol and a method for routing extension. The ad-hoc network comprises a gateway for appending an address configuration message to an ad-hoc Routing REPly (RREP) message and transmitting an extended ad-hoc RREP message; and a node for separating the address configuration message from the received extended ad-hoc RREP message, establishing a packet transmission path using the ad-hoc RREP message, and configuring a global address using the separated address configuration message. Accordingly, the present invention provides efficiency and improves the network scalability by utilizing the existing IPv6 protocol without amendments and reducing the size of the packet transmitted.