Pressure and temperature profile are key data for safe production in oil and gas wells. In this paper, a bucket-brigade inspired sensor network protocol is proposed which can be used to extract sensed data profile from the nanoscale up to kilometer long structures. The PHY/MAC layers are discussed. This protocol is best suited for low data rate exchanges in small fixed-size packets, named buckets, transmitted as time-domain bursts among high-precision smart sensors deployed as a queue. There is only one coordinator, which is not directly accessible by most of the sensor nodes. The coordinator is responsible for collecting the measurement profile and send it to a supervisory node. There is no need for complex routing mechanism, as the network topology is determined during deployment. There are many applications which require sensors to be deployed as a long queue and sensed data could be transmitted at low data rates. Examples of such monitoring applications are: neural connected artificial skin, oil/gas/water pipeline integrity, power transmission line tower integrity, (rail)road/highway lighting and integrity, individualized monitoring in vineyard or re-foresting or plantation, underwater telecommunications cable integrity, oil/gas riser integrity, oil/gas well temperature and pressure profile, among others. For robustness and reduced electromagnetic interference, wired network is preferred. Besides in some harsh environment wireless is not feasible. To reduce wiring, communications can be carried out in the same cable used to supply electrical power.
翻译:温度压力和温度剖面是石油和天然气油井安全生产的关键数据。在本文中,建议采用桶式桶式受创传感器网络协议,用于从纳米至千米长结构中提取感测数据剖面。讨论PHY/MAC层。该议定书最适合用于小型固定尺寸包中低数据率交换,称为水桶,作为时段部署的高精密智能传感器以时间-持续连发方式传输。只有一个协调员,大多数传感器节点无法直接进入。协调员负责收集测量剖面并发送到监管节点。不需要复杂的路由机制,因为网络布局是在部署期间确定的。许多应用都需要将传感器作为长队列和感官数据以低数据速传输。此类监测应用的例子包括:神经相连的人皮、油/气/水管道的完整性、电力传输线塔的可靠性、(铁路/高路灯光和完整性)、葡萄园或再造林的个体监测、水下电路/电路线路的完整度、水下电磁电路的完整度和电路面的完整性能,以及高压电压电压/电路的完整度的稳定性,用于高压电压/电压结构。在高压电压电压结构中,有些方面,使用高压/气压/气压/气压/电压/电压、电压、电压电压/电压、电压、电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压-电压