Abstract:
Methods and systems for managing health of devices in an Internet of Things (IoT) environment. A method includes detecting an occurrence of at least one event on a device of a plurality of devices and determining a change in ambience in the device. The method also includes detecting at least one anomaly in the device if the determined change in the ambience of the at least one device does not satisfy threshold criteria determined for the at least one event. The method further includes determining at least one root cause for the at least one anomaly detected in the device.
Abstract:
A method of dynamically forming a service aware Bluetooth low energy (BLE) mesh network is provided. The method includes deriving service requirements for a BLE mesh service based on a unique identifier associated with the BLE mesh service, determining a BLE mesh service to be provided based on at least one BLE parameter, and dynamically forming a BLE mesh network based on the determined BLE mesh service, the service requirements and the at least one BLE parameter. The BLE mesh network is one of connection-oriented, or connection-less.
Abstract:
The present disclosure relates to a sensor network, Machine Type Communication (MTC), Machine-to-Machine (M2M) communication, and technology for Internet of Things (IoT). The present disclosure may be applied to intelligent services based on the above technologies, such as smart home, smart building, smart city, smart car, connected car, health care, digital education, smart retail, security and safety services. A method and an apparatus for synchronizing communication between nodes in a bluetooth low energy (BLE) mesh network. In the network, a node is configured to generates a seed value based on at least one of own transmission parameter, wherein the seed value indicates next data advertisement instance of corresponding node. Further, the seed value is used for communicating with other nodes (i.e. 1-hop neighbor nodes) in the network. Based on data transfer requirements of the node, the node synchronizes own data transmission and reception settings, such that no two nodes transmit data at the same time.
Abstract:
The present disclosure discloses method and system for dynamically managing communications in a Bluetooth Low Energy (BLE) network. The method comprises: obtaining one or more BLE connection parameters of one or more slave devices in communication with a master device; detecting change information in the BLE network; dynamically determining one or more updated BLE connection parameters of the one or more slave devices based on the one or more BLE connection parameters and the change information; and controlling the communication between the one or more slave devices and the master device according to the dynamically determined one or more updated BLE connection parameters.