TL;DR: In this paper, a radio tuning method for a vehicle is proposed, which is based on sensing that the vehicle is traveling out of a terrestrial broadcast range of a radio station that a radio of the vehicle was currently tuned to.
Abstract: A radio tuning method for a vehicle includes sensing that the vehicle is traveling out of a terrestrial broadcast range of a radio station that a radio of the vehicle is currently tuned to. The radio station broadcasts first content. An internet location streaming second content that is substantially similar to the first content broadcasted by the radio station is identified. An estimated period of time remaining until the vehicle exits the terrestrial broadcast range of the first radio station is indicated to the user. A user of the vehicle is provided with an option to switch tuning of the radio from the radio station to the interaet location that is streaming the second content.
TL;DR: Locally time-synchronized slot systems for broadcast communication in packet radio networks are considered, and the probability of colliding slots is investigated to evaluate the performance of such systems.
TL;DR: In this paper, a radio tuning method for a vehicle is presented, in which the vehicle is traveling out of a first broadcast range of a radio station that a radio of the vehicle was currently tuned to.
Abstract: A radio tuning method for a vehicle includes sensing that the vehicle is traveling out of a first broadcast range of a first radio station that a radio of the vehicle is currently tuned to. The first radio station broadcasts first content. A second radio station is identified having a second broadcast range that the vehicle will be in when the vehicle is no longer in the first broadcast range. The identifying includes determining that the second radio station broadcasts second content that is substantially similar to the first content broadcasted by the first radio station. A user of the vehicle is provided with an option to switch tuning of the radio from the first radio station to the second radio station.
TL;DR: An adaptive relay node selection method for transmitting an alert message in communication between vehicles is provided to realize a short message transmission waiting time even though a node is not located in an edge of a communication range, thereby minimizing a message transmission delay time.
Abstract: An adaptive relay node selection method for transmitting an alert message in communication between vehicles is provided to realize a short message transmission waiting time even though a node is not located in an edge of a communication range, thereby minimizing a message transmission delay time. An original source node and location information of a source node are extracted. Location information of a node is obtained through a GPS(Global Positioning System). It is determined whether a received message is re-transmitted by comparing a broadcast range included in the received message with a distance from the original source node. If the node belongs to the broadcast range, a message transmission waiting time is calculated and selected. If the message transmission waiting time is expired, location information of a source node included in a broadcast message is changed into location information of a node. The received message is re-transmitted.
TL;DR: In this article, a short range RF information relative to an object from an object located within a defined area is broadcast by the transceiver of any wireless display device within RF broadcast range, the receiving device obtains the position of the object from a GPS satellite based upon the information received by the wireless display devices and the object and the information are displayed.
Abstract: Immediate changes and updates in a Global Positioning System (GPS) providing wireless communication display devices with displayed maps of a defined areas with traffic and objects of interest information are implemented through broadcasting short range RF information relative to an object from an object located within the defined area. When this broadcast information is received by the transceiver of any wireless display device within RF broadcast range, the receiving device obtains the position of the object from a GPS satellite based upon the information received by the wireless display device and the object and the information are displayed.