Abstract:
A method (310) for increasing network capacity for wireless mesh network, comprising the steps of initiating (320) a data transmission request between a source node (110) and a destination node (130), identifying (330) a mesh node (121) from a plurality of mesh nodes (120) which is closest to the source node (110) and a target node (129) which is closest to the destination node (130), establishing (340) multiple paths from the mesh node (121) towards the target node (129), synchronizing (370) sub-frame in the frame header for transferring packet data to the target node (129), fragmenting (380) the packet data into sub-packets to assign (390) and route (400) the sub-packets into the multiple paths, and aggregating (410) the sub-packets based on synchronization signals, arriving at the target node (129) the multiple paths at different time delay intervals, into data to be sent to the destination node (130).
Abstract:
A resource reservation method in a network, where the allocation of network bandwidth to each application connected to the network is determined by the end user is provided herewith.
Abstract:
An energy harvesting device (100) comprises a hollow prismatic body (12) formed of a plurality of faces are coated with a piezoelectric layer thereon, a plurality of elongated cantilevers (14) are arranged spatially from each other and inserted through the faces of the hollow prismatic body (12), the elongated cantilevers (14) are coated with a piezoelectric layer thereon, and at least one inner resilient means (16) of a particular stiffness having one end attached the hollow prismatic body (12) after determined the centre of gravity and mass of the hollow prismatic body (12) and the other end attached to a base (18) in order to be stable on its axis, wherein the device (100) is capable of detecting small amount of environmentally available vibration sources and producing huge vibration to the hollow prismatic body (12) and the cantilevers (14), thereby inducing the device (100) to generate electrical energy. The energy harvesting device (100) is capable of harvesting energy from ambient low scale vibration. Therefore it is applicable to any kind of energy harvesting where mechanical force in need to converted to electrical energy.
Abstract:
An apparatus for solar tracking using minimal energy is described. A prismatic energy harvester (10) is positioned above a spring (20). The harvester has a pair of ears (14) at both side of the top portion of the harvester. The ear is moved by strings (16) from a reel (18) connected to a box of motor (12). At least two photo-resistive elements track the sun rays intensity to identify the position of the sun. Then, the motor adjust the reels to rotate the harvester using strings until the harvester and the sun is at right angle. The photo-resistive elements continuously track the sun so that the harvester can be rotated towards the sun at right angle.
Abstract:
A method (100) for session transfer mechanism between communication devices. The method (100) comprises the steps of triggering a session transfer (102) on an first device having an active session with a corresponding device, identifying a second device (104) from a plurality of devices for the session transfer, transferring the active session (106) transpiring between the first device and the corresponding device to between the second device and the corresponding device, and reclaiming the active session (108) transpiring between the second device and the corresponding device if a session reclaiming is triggered on the first device.