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method for synchronization of a grossraumnetzwerks without global synchronization

机译:非全局同步的grossraumnetzwerks同步方法

摘要

A frequency-hopping packet communication system without a master clock or master control unit is based on use of a receiver's frequency hopping timing and identification to control communication. A frequency-hopping band plan, involving the number of channels and the pseudo-random pattern of frequency change and nominal timing of changes, is universally known to each node in the network. A transmitter acquires synchronization with a target node by use of information previously received from or about a target indicating timing of present idle frequency hop of the target receiver. Each receiving node establishes in each station or node a table of receiver frequency hopping sequence offsets (hop timing offsets) of each other node-within its communication range, and each node announces its presence on each frequency in a packet with a hop timing offset indicator. The hop timing offset indicator is a key used to read a table to allow nodes to set themselves in synchronization with one another. A location indicator built into the address of each packet is used to randomize an ordered frequency-hopping table at each node. Frequency-hopping is implemented by the division of communication slots and the accumulation of slots into epochs, wherein each epoch equals the total number of available slots (number of channels times the number of time frames per channel). The transmitting node tracks the pre-established frequency-hopping pattern for its target receiver based on previously-acquired information.
机译:没有主时钟或主控制单元的跳频分组通信系统是基于使用接收机的跳频定时和标识来控制通信的。网络中的每个节点都普遍知道跳频频带计划,其中涉及信道数量以及频率变化的伪随机模式和名义上的变化时序。发射机通过使用先前从目标接收或关于目标的信息来获取与目标节点的同步,该信息指示目标接收机的当前空闲跳频的定时。每个接收节点在其通信范围内,在每个站或节点中建立彼此节点的接收器跳频序列偏移量表(跳频时间偏移量),并且每个节点通过跳频时间偏移量指示符宣布其在分组中每个频率上的存在。 。跳时偏移指示符是用于读取表的键,以允许节点将自己设置为彼此同步。每个数据包地址中内置的位置指示符用于随机化每个节点上的有序跳频表。跳频是通过将通信时隙划分和将时隙累加成多个时期来实现的,其中每个时期等于可用时隙的总数(通道数乘以每个通道的时间帧数)。发射节点基于先前获取的信息跟踪其目标接收器的预先建立的跳频模式。

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