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A Rigid Message Scheduler for SBAS

机译:SBAS的刚性消息调度程序

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Satellite Based Augmentation Systems (SBASs) broadcast a series of 250-bit messages that together contain a full set of differential correction and integrity information. Each message requires one second to send and contains only a small subset of the full set of required information. Different types of data have different update periods, ranging from six seconds for the satellite integrity information, to five minutes for the ionospheric corrections. A key component of an SBAS is deciding which message needs to be sent at any given second. Each message has an associated time-out period that is approximately two times the update period. It is possible to get into a situation where several messages will time out within a very short interval and it may not be possible to update all of them within the desired timeframe. Further, if there is a change in integrity status that requires an alert to be broadcast, these alert messages will preempt and delay the broadcast of otherwise intended messages. The Wide Area Augmentation System (W AAS) currently uses a dynamic message scheduler that actively determines which messages should go out over the next several seconds. As the corrections or confidence levels change, some messages may change in priority. This scheduler has been carefully tuned for the current number of GPS satellites and ionospheric grid points, but the algorithm is not adaptable should either value change appreciably. Further, with the advent of L5 messages that have their content organized very differently (and that have no ionospheric corrections) a new message scheduling algorithm is needed.
机译:卫星增强系统(SBAS)广播了一系列250位消息,这些消息一起包含一整套差分校正和完整性信息。每条消息只需要一秒钟即可发送,并且只包含全部所需信息中的一小部分。不同类型的数据具有不同的更新周期,从卫星完整性信息的六秒到电离层校正的五分钟不等。 SBAS的一个关键组件是确定需要在任何给定的第二秒发送哪个消息。每个消息都有一个关联的超时时间,该超时时间大约是更新时间的两倍。可能会出现以下情况:几条消息将在很短的间隔内超时,并且可能无法在所需的时间范围内更新所有消息。此外,如果完整性状态发生变化,需要广播警报,则这些警报消息将抢先并延迟广播其他预期的消息。广域增强系统(W AAS)当前使用动态消息调度程序,该程序主动确定在接下来的几秒钟内哪些消息应该发送出去。随着更正或置信度级别的更改,某些消息的优先级可能会更改。该调度程序已针对当前的GPS卫星和电离层网格点的数量进行了仔细调整,但是该算法不适用于任何一个值发生明显变化的情况。此外,随着L5消息的出现,其内容的组织方式非常不同(并且没有电离层校正),因此需要一种新的消息调度算法。

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