WO2020063391A1 - 石油钻机交流变频直驱电机专用控制系统 - Google Patents

石油钻机交流变频直驱电机专用控制系统 Download PDF

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WO2020063391A1
WO2020063391A1 PCT/CN2019/106071 CN2019106071W WO2020063391A1 WO 2020063391 A1 WO2020063391 A1 WO 2020063391A1 CN 2019106071 W CN2019106071 W CN 2019106071W WO 2020063391 A1 WO2020063391 A1 WO 2020063391A1
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drive motor
control system
direct drive
controller
console
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PCT/CN2019/106071
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English (en)
French (fr)
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郑明建
冯旭骅
张洪
李崇博
郭阳
冉建
孙敏
李韬
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西安宝美电气工业有限公司
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Publication of WO2020063391A1 publication Critical patent/WO2020063391A1/zh

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    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21BEARTH DRILLING, e.g. DEEP DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B44/00Automatic control systems specially adapted for drilling operations, i.e. self-operating systems which function to carry out or modify a drilling operation without intervention of a human operator, e.g. computer-controlled drilling systems; Systems specially adapted for monitoring a plurality of drilling variables or conditions
    • E21B44/02Automatic control of the tool feed
    • E21B44/04Automatic control of the tool feed in response to the torque of the drive ; Measuring drilling torque
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B70/00Technologies for an efficient end-user side electric power management and consumption
    • Y02B70/30Systems integrating technologies related to power network operation and communication or information technologies for improving the carbon footprint of the management of residential or tertiary loads, i.e. smart grids as climate change mitigation technology in the buildings sector, including also the last stages of power distribution and the control, monitoring or operating management systems at local level
    • Y02B70/3225Demand response systems, e.g. load shedding, peak shaving
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S20/00Management or operation of end-user stationary applications or the last stages of power distribution; Controlling, monitoring or operating thereof
    • Y04S20/20End-user application control systems
    • Y04S20/222Demand response systems, e.g. load shedding, peak shaving

Definitions

  • the invention belongs to the technical field of petroleum rig equipment, in particular to a special control system for an AC variable frequency direct drive motor of a petroleum rig.
  • the winches, turntables and mud pumps in petroleum electric drilling rigs are driven by a high-speed motor plus a reduction gear box.
  • This driving method has a complicated structure and low transmission efficiency.
  • an additional drilling motor and a reduction gear box are needed, which undoubtedly increases the purchase cost, and the speed range of automatic drilling is narrow, and the drilling accuracy is low.
  • AC variable frequency direct drive technology has been applied to petroleum electric drilling rigs, which has the advantages of simple transmission chain structure, high transmission efficiency, small size, and light weight. Therefore, AC variable frequency direct drive technology will become the development trend of petroleum electric drilling rigs, but currently the traditional control system cannot meet the control performance and control accuracy of AC variable frequency direct drive low speed and high torque motors.
  • the purpose of the present invention is to provide a special control system for an AC variable frequency direct drive motor of an oil rig, which solves the problems of complex structure, narrow speed adjustment range, poor control performance and low precision of traditional rigs.
  • the technical solution adopted by the present invention is a special control system for an AC variable frequency direct drive motor of an oil rig, including:
  • a control system comprising a controller, a console, and an acquisition module; the control platform is connected to a command input terminal of the controller; a signal output terminal of the acquisition module is connected to a signal input terminal of the controller; A sensor is connected to the signal input end of the module, and the sensor is arranged on the AC variable frequency direct drive motor;
  • the converter system includes a rectifier unit, an inverter unit and an energy consumption braking unit electrically connected to each other through copper bars, the energy consumption braking unit is externally connected with a variable resistance box, and the controller commands
  • the output terminal is connected to the signal input terminal of the rectifier unit, the signal output terminal of the inverter unit is connected to the power terminal of the AC variable frequency direct drive motor, and between the shaft of the AC variable frequency direct drive motor and the signal input terminal of the inverter unit
  • An encoder is connected in series.
  • the console is a HIM man-machine control screen, and a command output terminal of the HIM man-machine control screen is connected to a command input terminal of the controller.
  • the console is a driver's manual console, and a command output terminal of the driver's manual console is connected to a command input terminal of the controller.
  • the console includes a HIM human-machine control screen and a driver's manual console, and the command output terminal of the HIM human-machine control screen and the driver's manual console is connected to a command input of the controller.
  • the rotating shaft of the AC variable frequency direct drive motor and the encoder are connected through a coupling.
  • the special control system for AC variable frequency direct drive motors of petroleum rigs of the present invention has the advantages of high efficiency, strong load capacity and wide speed range.
  • the core of the control system is through direct torque (DTC) plus closed loop control technology. It can meet the requirements of low-frequency full-load output and precise control of the speed of the direct drive motor of the rig, which promotes the direct drive motor of the drill rig to have a high-precision automatic drilling function.
  • DTC direct torque
  • the load dynamic change of the AC variable frequency direct drive motor dedicated control system of the petroleum rig adopts an accurate speed control algorithm to adjust the acceleration and deceleration time of the AC variable frequency direct drive motor according to the dynamic change of the load, thereby realizing the dynamic performance of the direct drive motor of the rig. Optimize the control and improve the operating efficiency of the rig as a whole.
  • the special control system for AC variable frequency direct drive motors of petroleum rigs of the present invention controls the HMI man-machine control screen to display the running status of each motor through the controller. Controlled in this way, the system has functions such as safety interlock, fault diagnosis, real-time monitoring, alarm, and self-protection.
  • FIG. 1 is a working principle diagram of a special control system for an AC variable frequency direct drive motor of an oil rig according to the present invention
  • FIG. 2 is a circuit schematic diagram of a special control system for an AC variable frequency direct drive motor of an oil rig according to the present invention.
  • control system 2. driver manual console, 3. HIM man-machine control screen, 4. controller, 5. acquisition module, 6. current conversion system, 7. resistance box, 8. rectifier unit, 9 Inverter unit, 10. Energy-consuming braking unit, 11. Encoder, 12. AC variable frequency direct drive motor.
  • a special control system for an AC variable frequency direct drive motor of an oil rig is mainly composed of a control system 1 and a converter system 6.
  • the control system 1 is mainly composed of a controller 4, a console and an acquisition module 5.
  • the command output terminal of the console is connected to the command input terminal of the controller 4, and the worker can control the controller 4 by operating the console and indirectly control the converter system 6, without directly operating the controller 4;
  • the signal output of the acquisition module 5 is connected to the signal input of the controller 4.
  • the acquisition module 5 is mainly used to monitor the temperature information of the AC variable frequency direct drive motor 12 in real time.
  • the signal input of the acquisition module 5 is connected to one
  • the sensor is a temperature sensor.
  • the sensor is arranged on the AC variable frequency direct drive motor 12 and is used to send the collected temperature information of the AC variable frequency direct drive motor 12 in the form of an electrical signal.
  • the acquisition module 5 is mainly used to receive and convert These electrical signals.
  • the converter system 6 includes a rectifier unit 8, an inverter unit 9, and an energy-consumption braking unit 10 which are electrically connected to each other by copper bars.
  • the energy-consumption braking unit 10 is externally connected with a resistance box 7, and the energy-consumption braking unit 10 can transmit the regenerative energy generated by the AC frequency conversion direct-drive motor 12 due to rapid braking to the matching resistance box 7 to achieve rapid braking.
  • the command output terminal of the controller 4 is connected to the signal input terminal of the rectifier unit 8, the signal output terminal of the inverter unit 9 is connected to the signal of the AC variable frequency direct drive motor 12
  • the input end is connected; an encoder 11 is connected in series between the rotating shaft of the AC frequency conversion direct drive motor 12 and the signal input end of the inverter unit 9, specifically, the signal receiving end of the encoder 11 is connected to the AC frequency conversion direct drive through a coupling.
  • the rotating shaft of the motor 12 is connected, and the signal transmitting end of the encoder 11 is connected to the signal input end of the inverter unit 9.
  • the console is preferably a HIM man-machine control screen 3, a command output terminal of the HIM man-machine control screen 3, and a controller.
  • the command input terminal of 4 is connected, and the HIM man-machine control screen 3 is a display screen based on the HIM man-machine interface.
  • the console is the driver's manual operation console 2, the driver's manual operation console 2 command output terminal and the controller 4
  • the input terminal is connected.
  • the driver's manual operation platform 2 is a traditional manual operation platform, and a plurality of control buttons are arranged on the table.
  • the console is composed of a HIM man-machine control screen 3 and a driver's manual operation console 2, and the HIM man-machine
  • the command output terminal of the control screen 3 and the command output terminal of the driver's manual console 2 are respectively connected to the command input terminal of the controller 4.
  • the dedicated control system for AC variable frequency direct drive motor 12 includes control system 1, converter system 2, AC variable frequency direct drive motor 7, controller 4 in this control system 1 and converter system 2, driller operation platform 3, HMI
  • the human-machine interface 4 and the acquisition module are connected through an industrial control bus.
  • the inverter unit 9 in the converter system 6 is connected to the AC variable frequency direct drive motor 12 through a power cable, and is connected to the energy consumption braking unit 10 through a copper bar.
  • the resistance box 7 is connected to the energy consumption braking unit 10. Connected by power cable.
  • the controller 4 monitors the status signal of the converter system 6 in real time through the rectifier unit 8 and monitors the operating status of the AC variable frequency direct drive motor 12 through the acquisition module 5 on the other hand, and then provides the rectifier unit with the monitored information. 8 Send a control command.
  • the inverter unit 9 outputs power to the AC variable frequency direct drive motor 12 and controls its operation.
  • the encoder 11 sends the rotation speed signal output by the AC variable frequency direct drive motor 12 to the inverter unit 9, and then consumes energy.
  • the braking unit 10 outputs the braking energy of energy consumption to the resistance box 7 according to specific conditions, and finally realizes the closed-loop control of the AC variable frequency direct drive motor 12.
  • the special control system for AC variable frequency direct drive motors of petroleum rigs of the present invention has the advantages of high efficiency, strong load capacity, and wide speed range.
  • the core of the control system is through direct torque (DTC) plus closed-loop control technology. It can meet the requirements of low-frequency full-load output and precise control of the speed of the direct drive motor of the rig.
  • DTC direct torque
  • the controller controls the HMI man-machine control screen to display the running status of each motor, and the driller can choose the HMI man-machine control screen and driver
  • the system has functions such as safety interlock, fault diagnosis, real-time monitoring, alarm, and self-protection.

Abstract

一种石油钻机交流变频直驱电机专用控制系统,包括控制系统(1)和变流系统(6);控制系统(1)包含控制器(4)、控制台和采集模块(5),控制台与控制器(4)的命令输入端连接,采集模块(5)的信号输出端与控制器(4)的信号输入端连接,采集模块(5)的信号输入端连接有传感器,传感器设置在交流变频直驱电机(12)上;变流系统(6)包含通过铜排相互电连接的整流单元(8)、逆变单元(9)和能耗制动单元(10),能耗制动单元(10)外接有电阻箱(7),控制器(4)与整流单元(8)连接,逆变单元(9)的信号输出端与交流变频直驱电机(12)的信号输入端连接,交流变频直驱电机(12)的转轴与逆变单元(9)的信号输入端之间串接有编码器(11)。该系统可实现钻机直驱电机低频满载输出和速度精准控制,钻机直驱电机具备高精度自动送钻功能。

Description

石油钻机交流变频直驱电机专用控制系统 技术领域
本发明属于石油钻机设备技术领域,特别是涉及一种石油钻机交流变频直驱电机专用控制系统。
背景技术
目前石油电动钻机中的绞车﹑转盘和泥浆泵均采用高速电机加减速箱的驱动方式工作,这种驱动方式结构复杂,传动效率低。为实现自动送钻功能,还需额外增加一台送钻电机及减速箱,这无疑增加了购置的成本,且自动送钻的调速范围窄,送钻精度低。
近年来,交流变频直驱技术应用于石油电动钻机,其具有传动链构成简单、传动效率高、尺寸小、重量轻等优点。因此,交流变频直驱技术将成为石油电动钻机的发展趋势,但是目前传统的控制系统还无法满足交流变频直驱低速大扭矩电机的控制性能及控制精度。
发明内容
本发明的目的是提供一种石油钻机交流变频直驱电机专用控制系统,解决传统钻机结构复杂,调速范围窄,控制性能差和精度低的问题。
为了达到上述目的,本发明所采用的技术方案是,一种石油钻机交流变频直驱电机专用控制系统,包括:
控制系统,所述控制系统包含控制器、控制台和采集模块,所述控制平台与所述控制器的命令输入端连接,所述采集模块的信号输出端与控制器的信号输入端连接,采集模块的信号输入端连接有传感器,所述传感器设置在交流变频直驱电机上;
变流系统,所述变流系统包含通过由铜排相互电连接的整流单元、逆变单元和能耗制动单元,所述能耗制动单元外接有变阻箱,所述控制器的命令输出端与所述整流单元的信号输入端连接,所述逆变单元的信号输出端与交流变频直驱电机的电源端连接,交流变频直驱电机的转轴与逆变单元的信号 输入端之间串接有编码器。
本发明的技术方案,还具有以下特点:
所述控制台为HIM人机控制屏,所述HIM人机控制屏的命令输出端与所述控制器的命令输入端连接。
所述控制台为司机手动操作台,所述司机手动操作台的命令输出端与所述控制器的命令输入端连接。
所述控制台包含HIM人机控制屏和司机手动操作台,所述HIM人机控制屏和司机手动操作台的命令输出端与所述控制器的命令输入端连接。
所述交流变频直驱电机的转轴与所述编码器通过联轴器连接。
本发明的有益效果是:
(1)本发明的石油钻机交流变频直驱电机专用控制系统,具有效率高、带载能力强以及调速范围广等优点,该控制系统的核心是通过直接转矩(DTC)加闭环控制技术,可以满足钻机直驱电机的低频满载输出以及速度的精准控制要求,促使钻车直驱电机具备高精度自动送钻功能。
(2)本发明的石油钻机交流变频直驱电机专用控制系统的负载动态变化,采用精确速度控制算法,根据负载动态变化调整交流变频直驱电机的加减速时间,实现钻机直驱电机性能的动态优化控制,从整体上提升钻机的作业时效。
(3)本发明的石油钻机交流变频直驱电机专用控制系统,通过控制器控制HMI人机控制屏显示各个电机的运行状态,司钻操作可选择HMI人机控制屏和司机手动操作台控制两种方式进行控制,该系统具备安全互锁、故障诊断、实时监控、报警、自保护等功能。
附图说明
图1是本发明的一种石油钻机交流变频直驱电机专用控制系统的工作原理图;
图2是本发明的一种石油钻机交流变频直驱电机专用控制系统的电路原理图。
图中,1.控制系统,2.司机手动操作台,3.HIM人机控制屏,4.控制器,5.采集模块,6.变流系统,7.电阻箱,8.整流单元,9.逆变单元,10.能耗制动单元,11.编码器,12.交流变频直驱电机。
具体实施方式
以下结合附图说明和具体实施例对本发明的技术方案作进一步地详细说明。
如图1所示,一种石油钻机交流变频直驱电机专用控制系统,主要由控制系统1和变流系统6组成。
控制系统1主要由控制器4、控制台和采集模块5组成。其中:控制台的命令输出端与控制器4的命令输入端连接,工人可通过操作控制台来实现对控制器4的控制,间接实现对变流系统6的控制,无需直接操作控制器4;采集模块5的信号输出端则与控制器4的信号输入端连接,采集模块5主要用于实时监测交流变频直驱电机12运行时的温度信息,具体来说采集模块5的信号输入端连接一个传感器,该传感器为温度传感器,传感器设置在交流变频直驱电机12上,用于将采集到的交流变频直驱电机12的温度信息以电信号的形式发出,采集模块5主要用于接收并转化这些电信号。
结合图2,变流系统6,变流系统6包含通过由铜排相互电连接的整流单元8、逆变单元9和能耗制动单元10。
其中:能耗制动单元10外接有电阻箱7,能耗制动单元10可将交流变频直驱电机12因快速制动而产生的再生电能传输至与其匹配的电阻箱7,进而实现快速制动,并保护逆变单元9免受该再生电能的迫害;控制器4的命令输出端与整流单元8的信号输入端连接,逆变单元9的信号输出端与交流变频直驱电机12的信号输入端连接;交流变频直驱电机12的转轴与逆变单元9的信号输入端之间串接有编码器11,具体来说,编码器11的信号接收端通过联轴器与交流变频直驱电机12的转轴连接,编码器11的信号发射端与逆变单元9的信号输入端连接。
作为本发明的石油钻机交流变频直驱电机专用控制系统中控制台的一种优选的自动控制方式,控制台优选为HIM人机控制屏3,HIM人机控制屏3的命令输出端与控制器4的命令输入端连接,HIM人机控制屏3为基于HIM人机界面的显示屏。
作为本发明的石油钻机交流变频直驱电机专用控制系统中控制台的一种优选的手动控制方式,控制台为司机手动操作台2,司机手动操作台2的命令输出端与控制器4的命令输入端连接,司机手动操作台2为传统的手动操 作式平台,其台面设置有多个控制按钮。
作为本发明的石油钻机交流变频直驱电机专用控制系统中控制台的一种优选的手动+自动的混合控制方式,控制台由HIM人机控制屏3和司机手动操作台2构成,HIM人机控制屏3的命令输出端和司机手动操作台2的命令输出端分别与控制器4的命令输入端连接。
交流变频直驱电机12专用的控制系统包括控制系统1、变流系统2、交流变频直驱电机7,该控制系统1中的控制器4分别与变流系统2、司钻操作台3、HMI人机界面4和采集模块通过工业控制总线相连。
如图2所示,变流系统6中的逆变单元9通过动力电缆与交流变频直驱电机12连接,通过铜排与能耗制动单元10相连,电阻箱7与能耗制动单元10通过动力电缆相连。工作时,控制器4一方面通过整流单元8实时监测变流系统6的状态信号,另一方面通过采集模块5监测交流变频直驱电机12的运转状态,进而可根据监测到的信息给整流单元8发送控制命令,此时逆变单元9输出动力到交流变频直驱电机12,控制其进行运转,此后编码器11将交流变频直驱电机12输出的转速信号到逆变单元9,之后能耗制动单元10则根据具体情况输出能耗制动动力到电阻箱7,最终实现交流变频直驱电机12的闭环控制。
因此,本发明的石油钻机交流变频直驱电机专用控制系统,具有效率高、带载能力强以及调速范围广等优点,该控制系统的核心是通过直接转矩(DTC)加闭环控制技术,可以满足钻机直驱电机的低频满载输出以及速度的精准控制要求,促使钻车直驱电机具备高精度自动送钻功能;采用精确速度控制算法,根据负载动态变化调整交流变频直驱电机的加减速时间,实现钻机直驱电机性能的动态优化控制,从整体上提升钻机的作业时效;通过控制器控制HMI人机控制屏显示各个电机的运行状态,司钻操作可选择HMI人机控制屏和司机手动操作台控制两种方式进行控制,该系统具备安全互锁、故障诊断、实时监控、报警、自保护等功能。

Claims (5)

  1. 一种石油钻机交流变频直驱电机专用控制系统,其特征在于,包括
    控制系统(1),所述控制系统(1)包含控制器(4)、控制台和采集模块(5),所述控制台与所述控制器(4)的命令输入端连接,所述采集模块(5)的信号输出端与控制器(4)的信号输入端连接,采集模块(5)的信号输入端连接有传感器,所述传感器设置在交流变频直驱电机(12)上;
    变流系统(6),所述变流系统(6)包含通过铜排相互电连接的整流单元(8)、逆变单元(9)和能耗制动单元(10),所述能耗制动单元(10)外接有电阻箱(7),所述控制器(4)的命令输出端与所述整流单元(8)的信号输入端连接,所述逆变单元(9)的信号输出端与交流变频直驱电机(12)的电源端连接,交流变频直驱电机(12)的转轴与逆变单元(9)的信号输入端之间串接有编码器(11)。
  2. 根据权利要求1所述的石油钻机交流变频直驱电机专用控制系统,其特征在于,所述控制台为HIM人机控制屏(3),所述HIM人机控制屏(3)的命令输出端与所述控制器(4)的命令输入端连接。
  3. 根据权利要求1所述的石油钻机交流变频直驱电机专用控制系统,其特征在于,所述控制台为司机手动操作台(2),所述司机手动操作台(2)的命令输出端与所述控制器(4)的命令输入端连接。
  4. 根据权利要求1所述的石油钻机交流变频直驱电机专用控制系统,其特征在于,所述控制台包含HIM人机控制屏(3)和司机手动操作台(2),所述HIM人机控制屏(3)和司机手动操作台(2)的命令输出端与所述控制器(4)的命令输入端连接。
  5. 根据权利要求1所述的石油钻机交流变频直驱电机专用控制系统,其特征在于,所述交流变频直驱电机(12)的转轴与所述编码器(11)通过联轴器连接。
PCT/CN2019/106071 2018-09-26 2019-09-17 石油钻机交流变频直驱电机专用控制系统 WO2020063391A1 (zh)

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