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AUTOMATED CONTROL SYSTEM OF GAS technological losses of gas pumping units booster station

机译:燃气抽油机增压站燃气技术损失自动控制系统

摘要

The invention relates to computing, information management system and can be used in gas production, oil and other industries. The system includes a unit diagnosis signals gazoperekachivajushchih compressors sensors associated with their main entrances with pressure sensors, temperature and gas seals, sensors discrete signals valves status, communication and control modes of gas dynamic seals, as well as with temperature sensors, pressure, and flow rate of the gas collection manifold with the receiver , discrete signal sensors valves status, communication and control modes of the gas collection manifold with the receiver. Block analysis process condition, associated with their major inputs to workstation (AWP) Administrator, exit unit diagnosis signals gazoperekachivajushchih compressors sensors, with the first major outlet APM main control board and a first primary output block of reference and forming an archive events, the second main output of which It connected to the first input ARM main control panel. Block status display process and a system, coupled with an input to the main output of the analysis of the process, and the first major outlet with the second input of APM main control panel, the second main output of which is connected to the main input of the calculation unit changes the gas collection manifold performance with a receiver, whose output effects associated with the input distribution unit calculated by the gas seals, the main outputs of which are connected respectively to the input unit Veda Ia and forming archive events and key input unit outputting signals and control actuators gas seals and APM booster compressor service associated with their major inputs respectively to the second output of the display state of the process and system and the third output of the block of reference and forming an archive events. In addition to the system introduced: block parameter memory gas seals, a memory unit parameters of the gas collection manifold with the receiver unit of gas flow rate changes in the spark gas seals, the determination unit gas seals available for automatic control, the total gas flow adder gas seals, the block calculating pressure change rate , the orientation calculation unit pressure change unit for generating control signals, power adjustment ranges proizvoditelnos and gas seals, the block calculating the minimum and maximum inventory capacity adder total flow gas seals are available to control and block performance change permission gas collection manifold with the receiver. APM main control board is provided with four additional outputs, each of which is associated respectively with the input of memory block parameters gas seals, to the input of the storage unit the parameters of the gas collection manifold with the receiver, to a first input of determining gas seals available for the automatic control and the first input of the permission change performance of the gas-collection reservoir with the receiver. Yield memory block parameters gas seals is connected to a first auxiliary input unit diagnosis signals gazoperekachivajushchih compressors sensors, a second auxiliary input of which is connected to the first output of the storage unit the parameters of the gas collection manifold with the receiver. The first and second outputs of APM booster compressor service connected respectively to a first input of correction performance ranges gas seals and the second input determination unit gas seals available for automatic control, the third input of which is connected to a first additional output of the analysis block state of the process, a second additional output is is connected in parallel with a common inlet flow gas seals adder and the first input unit calculating the minimum and maximum inventory capacity, the second input of which is connected to a first output adjustment performance ranges gas seals, the second input of which is connected to the output determination unit gas seals available for automatic control, and the second output to the input of the adder total flow gas seals available for management. the total flow output of the adder gas seals is connected in parallel to the input direction computing unit change in pressure and to the first input unit calculating pressure change rate, the second input of which is connected to the second output of the storage unit the parameters of the gas collection manifold with the receiver. The first and second inputs of the block of control signals associated with the output of the calculating pressure change rate and yield the orientation calculation pressure variation unit, and an output - to a second input of the permission changing the gas collection manifold performance with the receiver, the third and fourth inputs of which are connected respectively with the output of calculating section minimum and maximum inventory capacity and output of the adder total flow gas seals are available for control. The output of resolution change performance gas-collection reservoir with a receiver associated with an additional input unit for calculating changes in the productivity of the gas collection manifold with the receiver. gas flow rate changing unit on the spark gas seals with its input connected to an additional output of distribution unit exposure calculated from gas seals, and the additional input output unit outputting signals and control actuators.
机译:本发明涉及计算信息管理系统,可用于天然气生产,石油等行业。该系统包括一个单元诊断信号gazoperekachivajushchih压缩机传感器,其主要入口与压力传感器,温度和气体密封,离散信号阀状态,气体动态密封的通信和控制模式以及温度传感器,压力和流量相关联带有接收器的集气歧管的速率,离散信号传感器阀门状态,带有接收器的集气歧管的通信和控制模式。块分析过程条件及其与工作站(AWP)管理员的主要输入相关联,出口单元诊断信号gazoperekachivajushchih压缩机传感器,具有第一个主要出口APM主控制板和第一个主要的参考输出块,并形成归档事件,第二个其主输出连接到第一个输入ARM主控制面板。块状态显示过程和系统,再加上一个输入到分析过程的主输出,以及第一个主要出口与APM主控制面板的第二个输入,其第二个主输出连接到主输入计算单元的输入端通过接收器改变集气歧管的性能,接收器的输出效果与通过气封计算出的输入分配单元相关,其主要输出分别连接到输入单元Veda Ia并形成存档事件和键输入单元输出信号并控制执行器气封和APM增压压缩机服务及其主要输入,分别与过程和系统的显示状态的第二个输出以及参考块的第三个输出相关,并形成存档事件。除了介绍的系统:块参数存储气密封,存储单元参数的气体收集歧管随接收器单元的气体流量变化,火花气密封,确定单元的气密封可自动控制外,总气体流量加法器气封,计算压力变化率的块,用于生成控制信号的方向计算单元压力变化单元,功率调整范围proizvoditelnos和气封,计算最小和最大库存量加法器总流量气封的块可用于控制并与接收器阻塞性能变更许可气体收集歧管。 APM主控制板具有四个附加输出,每个输出分别与存储块参数气体密封的输入相关联,将带有接收器的气体收集歧管的参数与存储单元的输入相关联,并与存储的第一输入相关联。确定可用于自动控制的气体密封以及带有接收器的集气罐的许可更改性能的第一个输入。产量存储块参数气体密封件连接到第一辅助输入单元诊断信号gazoperekachivajushchih压缩机传感器,该传感器的第二辅助输入端通过接收器将气体收集歧管的参数连接到存储单元的第一输出。 APM增压压缩机服务的第一和第二输出分别连接到校正性能范围气密封的第一输入和可用于自动控制的第二输入确定单元气密封,其第三输入连接到分析的第一附加输出在该过程的方框状态下,第二个附加输出与一个公共进气流量气封加法器并联连接,并且第一个输入单元计算最小和最大库存容量,其第二个输入连接到第一个输出调整性能范围气封,其第二输入连接到可用于自动控制的输出确定单元气封,第二输出连接到可用于管理的加法器总流量气封的输入。加法气密封的总流量输出与输入方向计算单元的压力变化以及与第一输入单元计算的压力变化率并行连接,其第二输入与存储单元的第二输出连接,参数集气管与接收器的连接。与计算压力变化率的输出相关联的控制信号块的第一输入和第二输入,并产生方向计算压力变化单元,以及与接收器一起改变许可气体收集歧管性能的许可的第二输入,其第三和第四输入分别与计算部分最小和最大库存量的输出以及加法器总流量气封的输出相连,可用于控制。具有接收器的分辨率变化性能气体收集容器的输出,该接收器与用于计算具有接收器的气体收集歧管的生产率变化的附加输入单元相关联。火花气体密封件上的气体流速改变单元,其输入连接到根据气体密封件计算出的分配单元暴露的附加输出,并且附加输入输出单元输出信号和控制执行器。

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