WO2014107865A1 - 兼容电能表与用电信息采集终端的检定装置及检定方法 - Google Patents
兼容电能表与用电信息采集终端的检定装置及检定方法 Download PDFInfo
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- WO2014107865A1 WO2014107865A1 PCT/CN2013/070322 CN2013070322W WO2014107865A1 WO 2014107865 A1 WO2014107865 A1 WO 2014107865A1 CN 2013070322 W CN2013070322 W CN 2013070322W WO 2014107865 A1 WO2014107865 A1 WO 2014107865A1
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R35/00—Testing or calibrating of apparatus covered by the other groups of this subclass
- G01R35/04—Testing or calibrating of apparatus covered by the other groups of this subclass of instruments for measuring time integral of power or current
Definitions
- Verification device and verification method compatible with electric energy meter and electric energy information collecting terminal
- the invention relates to the field of automatic testing technology, and particularly relates to a verification device and an verification method capable of being compatible with the detection of the electric energy meter and the electric energy information collecting terminal without manual intervention.
- the energy meter and the power information collection terminal In the power system, in the domestic and international automated test technology, the energy meter and the power information collection terminal must be verified (tested) before use, and the verification device is used to detect the power meter and the power information collection terminal.
- the verification device is designed to detect only one type of metering device, and some can not test the power information collection terminal if it meets the detection of the energy meter, and the other can not detect the smart energy meter if it meets the detection of the power information collection terminal.
- the two are not compatible with one verification device, which makes the detection capacity unable to be flexibly configured.
- Each verification device must be configured with a certain amount and cannot be dynamically adjusted according to the requirements, but the appearance of the electric energy meter and the electricity information collection terminal is basically the same. Therefore, it is necessary to provide a verification device and an authentication method in which the same detection bit is compatible by the interface switching mode. At present, only the patent number that has been applied to detect the energy meter and the power information collection terminal is
- the patent discloses an integrated detection pipeline of electric energy meter, terminal and concentrator, which are respectively detected at different stations during the pipeline verification process, but share a part of the pipeline verification process.
- Components such as material mechanism, mechanical transmission, cutting mechanism, etc.
- the meter, terminal, and concentrator are still connected at their respective stations using different interfaces, the actual use of the same station is not realized.
- the flexible configuration of the capacity cannot be performed.
- the verification device and the verification method of the compatible electric energy meter and the electric energy information collecting terminal provided by the invention can flexibly and flexibly configure the configuration of the electric energy meter or the electric information collecting terminal according to the testing requirement, automatically complete the testing task, and effectively improve the utilization rate of the verification device. It can reduce the cost of production and can be widely used in the verification of electric energy meters and power information collection terminals of power companies, and has a good application prospect.
- the invention relates to a verification device compatible with an electric energy meter and a power information collecting terminal, comprising an verification frame, wherein the verification frame is evenly distributed with a plurality of inspection stations, wherein: the detection stations comprise a detection panel and a crimping mechanism located above the detection panel a positioning mechanism located at two sides of the detecting panel, and an intelligent test meter tray located below the detecting panel, the smart test meter tray includes a current terminal frame for mounting a current terminal, a voltage terminal frame for mounting the voltage terminal, and For the auxiliary signal frame in which the auxiliary signal terminals are installed,
- the current terminal frame is provided with an X-axis current servo motor for controlling a current terminal spacing and a Z-axis current servo motor for controlling a distance between the current terminal frame and the detecting panel in the z-axis direction;
- the voltage terminal frame is provided with an X-axis voltage servo motor for controlling the voltage terminal spacing and a Z-axis voltage servo motor for controlling the voltage terminal frame and the z-axis direction of the current terminal frame;
- the auxiliary signal frame is provided with an X-axis auxiliary servo motor for controlling the spacing of the auxiliary signal terminals, a Y-axis auxiliary servo motor for controlling the distance between the auxiliary signal frame and the current terminal frame in the Y-axis direction; the control auxiliary signal frame and the current terminal frame z-axis Z-axis auxiliary servo motor with direction spacing;
- the auxiliary signal frame is further provided with a single-pole double-position relay connected to the auxiliary signal terminal to form a relay array, and the relay array is used for auxiliary test signal and power information collection with the electric energy meter.
- the terminal auxiliary test signals are connected.
- the foregoing verification device for the compatible electric energy meter and the electric energy information collecting terminal is characterized in that: the number of the X-axis auxiliary servo motor, the single-pole double-position relay and the auxiliary signal terminal are the same.
- the foregoing verification device for a compatible electric energy meter and a power information collecting terminal is characterized in that: the verification frame is made of an aluminum material.
- the verification method of the verification device based on the above-mentioned compatible electric energy meter and the electric energy information collecting terminal is characterized in that: the following steps are included,
- Step (1) Formulating a test plan and issuing a test plan to the detecting device;
- Step (2) According to the electrical interface position of the device to be tested, the intelligent test table is automatically controlled to adjust the spacing between the current terminal, the voltage terminal and the auxiliary signal terminal, and the position of the current terminal frame, the voltage terminal frame and the auxiliary signal frame. ;
- Step (3) After the adjustment of the intelligent test meter is completed, the automatic loading and unloading robot feeds the inspection stations of the detecting device;
- Step (4) After the loading is completed, the device to be inspected is fixed by the crimping mechanism and the positioning mechanism, and the automatic connection step (5) determines whether the electrical connection requirements of the auxiliary signal terminal and the electric energy meter or the electric power information collecting terminal are consistent, if consistent Test without adjustment; if it is inconsistent, switch with relay array and redefine the auxiliary signal terminal to test.
- Step (6) The test is completed, the automatic disconnection is performed, and the automatic loading and unloading robot performs the blanking, completes the entire test, and repeats the steps (D o ).
- the foregoing verification method of the verification device for the compatible electric energy meter and the electric energy information collecting terminal is characterized in that: the automatic control intelligent test table supports adjusting the current connection terminal, the voltage connection terminal and the auxiliary signal
- the steps for the spacing between the terminals are as follows:
- the foregoing verification method of the verification device for the compatible electric energy meter and the electric information collecting terminal is characterized in that: the automatic control intelligent test table adjusts the positions of the current terminal frame, the voltage terminal frame and the auxiliary signal frame as follows:
- the invention has the beneficial effects that: the invention is compatible with the verification device and the verification method of the electric energy meter and the electric information collecting terminal, and each detecting station of the verification device can automatically adjust the test wiring position and electrical and signal properties according to the object to be inspected,
- the wiring adopts automatic crimping mode, all automatic completion, no manual intervention, flexible and flexible configuration according to test requirements can automatically complete the test task, effectively improve the utilization rate of equipment and reduce the cost of production.
- the invention can be widely applied to three-phase intelligent power enterprises. Verification of energy meter and power information collection terminal.
- 1 is a schematic structural view of an apparatus for verifying a compatible electric energy meter and a power information collecting terminal of the present invention.
- 2 is a schematic view showing the structure of a detecting station of the present invention.
- FIG. 3 is a system block diagram of the smart test meter of the present invention.
- FIG. 4 is a schematic structural view of an auxiliary signal frame of the present invention.
- a verification device compatible with the electric energy meter and the electric energy information collecting terminal comprises an verification frame 1, and the verification frame 1 is composed of an aluminum material, which facilitates the heat dissipation during the detection process and improves the detection precision.
- the inspection frame 1 is evenly distributed with a plurality of inspection stations 2, each inspection station 2 includes a detection panel 3 and a crimping mechanism 4 located above the detection panel 3, located at the detection panel 3 Positioning mechanism 5, intelligent test meter holder 6 located under the detection panel 3, as shown in FIG. 3, the smart test meter holder 6 includes a current terminal frame 7 for mounting a current connection terminal, and a voltage terminal frame for mounting the voltage connection terminal.
- the current terminal frame is provided with an X-axis current servo motor for controlling the current terminal spacing and a Z-axis current for controlling the distance between the current terminal frame and the detection panel in the Z-axis direction Servo motor, current terminal is on a straight line of X axis, X axis current servo motor is control current connection Servomotor terminal pitch in the X-axis direction, Z-axis servo motor current to control current terminal frame pitch detection panel Z-axis direction of the servo motor;
- the voltage terminal frame 8 is provided with an X-axis voltage servo motor for controlling the voltage terminal spacing and a Z-axis voltage servo motor for controlling the voltage terminal frame and the current terminal frame Z-axis direction spacing, and the voltage terminal
- the X-axis voltage servo motor is a servo motor that controls the spacing of the voltage terminals in the X-axis direction
- the z-axis voltage servo motor is a servo motor that controls the voltage terminal frame and the Z-axis direction of the current terminal frame.
- the auxiliary signal frame 9 is provided with an X-axis auxiliary servo motor for controlling the pitch of the auxiliary signal terminals, a Y-axis auxiliary servo motor for controlling the distance between the auxiliary signal frame and the Y-axis direction of the current terminal frame, and the Z-axis direction of the control auxiliary signal frame and the current terminal frame.
- the Z-axis auxiliary servo motor with the spacing, the auxiliary signal terminal is on a straight line of the X-axis
- the X-axis auxiliary servo motor is the servo motor for controlling the spacing of the auxiliary signal terminal in the X-axis direction
- the Y-axis auxiliary servo motor is the control control auxiliary.
- the servo motor of the Y-axis direction of the signal frame and the current terminal frame, and the z-axis auxiliary servo motor are servo motors that control the distance between the auxiliary signal frame and the current terminal frame in the z-axis direction.
- the auxiliary signal frame 9 is further provided with a single-pole double-position relay connected to the auxiliary signal terminal to form a relay array, and the relay array is used for the auxiliary test signal of the electric energy meter and the auxiliary test signal of the electric information collecting terminal.
- Connection here the number of X-axis auxiliary servo motor, single-pole double-position relay and auxiliary signal terminal are the same.
- One X-axis auxiliary servo motor controls the connection of an auxiliary signal terminal through a single-pole double-position relay.
- the relay array is used to re-connect. Define auxiliary signal terminals, which are automatically controlled and switched by software during testing.
- the verification method based on the above-mentioned verification device for the compatible electric energy meter and the electric energy information collecting terminal includes the following steps:
- the first step is to develop a test plan and issue a test plan to the test device.
- the test plan developed here is based on the instrumentation test standard of the power industry and the attributes of the device to be tested.
- the attributes include mechanical size, electrical interface position and signal properties. Etc., and the properties of the electric energy meter and the electric energy information collecting terminal of the present invention are publicly listed by those skilled in the art, and therefore are not listed one by one;
- the intelligent test table is automatically controlled to adjust the spacing between the current terminal, the voltage terminal and the auxiliary signal terminal, and the position of the current terminal frame, the voltage terminal frame and the auxiliary signal frame. ;
- the automatic loading and unloading robot feeds the inspection stations of the detecting device
- the fourth step the loading is completed, the equipment to be tested is fixed by the crimping mechanism and the positioning mechanism, and the fifth step is automatically connected to determine whether the electrical connection requirements of the auxiliary signal terminal and the electric energy meter or the electricity information collecting terminal are consistent, if consistent Test without adjustment; if it is inconsistent, switch with relay array and redefine the auxiliary signal terminal to test.
- the test is completed, the automatic disconnection is performed, and the automatic loading and unloading robot performs the blanking, completes the entire test, and repeats the first step to perform the test on a device to be tested.
- the automatic control intelligent test table adjusts the spacing between the current terminal, the voltage terminal and the auxiliary signal terminal. According to the position of the electrical interface, the steps are as follows:
- the automatic control smart test table adjusts the position of the current terminal frame, the voltage terminal frame and the auxiliary signal frame. According to the mechanical size of the device to be tested, the steps are as follows:
- the invention is compatible with the verification device and the verification method of the electric energy meter and the electric information collecting terminal, and each detecting position of the verification device can automatically adjust the test wiring position, electrical and signal properties according to the object to be inspected, and the wiring is automatically adopted.
- the crimping method is fully automated, without manual intervention.
- the flexible and flexible configuration according to the test requirements can automatically complete the testing task, effectively improve the utilization rate of the equipment, and reduce the production cost.
- the invention can be widely applied to the three-phase smart electric energy meter of the electric power enterprise and Verification of the electricity information collection terminal.
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Abstract
一种兼容电能表与用电信息采集终端的检定装置及检定方法,检定装置的每个检测工位都可根据被检对象自动调整测试接线位置和电气信号性质,根据测试需求灵活柔性配置,接线采用自动压接方式,该装置可有效提高设备利用率,降低生产成本。
Description
兼容电能表与用电信息采集终端的检定装置及检定方法 技术领域
本发明涉及自动化测试技术领域, 具体涉及一种无需人工干预, 能够兼容 检测电能表与用电信息采集终端的检定装置及检定方法。
背景技术
在电力系统中, 国内外自动化测试技术中, 电能表和用电信息采集终端在 使用前必须经过检定 (测), 检定装置是用来对电能表和用电信息采集终端进行 检测的, 目前, 检定装置设计成只能检测一种计量设备, 有的符合了电能表的 检测, 就无法测试用电信息采集终端, 还有的符合了用电信息采集终端的检测, 就不能检测智能电能表。 两者不能兼容在一台检定装置上, 导致检测产能无法 柔性化配置, 每种检定装置都必须配置一定数量, 无法根据需求进行动态调整, 但是因为电能表与用电信息采集终端的外观基本一致, 所以可以考虑提供一种 同一检测位通过接口切换方式进行二者兼容的检定装置及检定方法是十分必要 的。 目前, 已申请的能够检测电能表与用电信息采集终端的只有专利号为
[20120103240. 5] , 该专利公开的是一种电能表、 终端、 集中器一体化检测流水 线, 其在流水线检定过程中还是分别在不同的工位进行检测, 只是共用了流水 线检定过程中的一部分组成构件, (如上料机构、 机械传动输送、 下料机构等), 检测时电能表、 终端、 集中器仍是在各自的工位上采用各自不同的接口进行连 接, 没有真正实现采用同一工位, 通过接口切换, 兼容电能表与用电信息采集 终端的检定, 也就无法进行产能的柔性化配置。
发明内容
为了解决现有技术中检定装置, 不能实现采用同一工位兼容电能表与用电信 息采集终端的检测, 从而无法进行产能的柔性化配置的问题。 本发明提供的兼 容电能表与用电信息采集终端的检定装置及检定方法, 能够根据测试需求灵活 柔性配置电能表或者用电信息采集终端的配置, 自动完成测试任务, 有效提高 检定装置的利用率, 降低生产的成本, 能够广泛应用于电力企业电能表和用电 信息采集终端的检定, 具有良好的应用前景。
为了达到上述目的, 本发明所采取的技术方案是:
一种兼容电能表与用电信息采集终端的检定装置, 包括检定框架, 检定框 架均匀分布着若干个检测工位, 其特征在于: 各检测工位包括检测面板和位于 检测面板上方的压接机构、 位于检测面板两恻的定位机构、 位于检测面板下方 的智能测试表托, 所述智能测试表托包括用于安装电流接线端子的电流端子框 架、 用于安装电压接线端子的电压端子框架和用于安装辅助信号接线端子的辅 助信号框架,
所述电流端子框架上设有控制电流接线端子间距的 X轴电流伺服电机和控 制电流端子框架与检测面板 z轴方向间距的 Z轴电流伺服电机;
所述电压端子框架上设有控制电压接线端子间距的 X轴电压伺服电机和控 制电压端子框架和电流端子框架 z轴方向间距的 Z轴电压伺服电机;
所述辅助信号框架上设有控制辅助信号接线端子间距的 X轴辅助伺服电机、 控制辅助信号框架与电流端子框架 Y轴方向间距的 Y轴辅助伺服电机; 控制辅 助信号框架与电流端子框架 z轴方向间距的 Z轴辅助伺服电机;
所述辅助信号框架上还设有与辅助信号接线端子连接的单刀双置继电器, 构成继电器阵列, 所述继电器阵列用于与电能表辅助测试信号和用电信息采集
终端辅助测试信号相连接。
前述的兼容电能表与用电信息采集终端的检定装置, 其特征在于: X轴辅助 伺服电机、 单刀双置继电器与辅助信号接线端子的数量一致。
前述的兼容电能表与用电信息采集终端的检定装置, 其特征在于: 所述检 定框架为铝型材料构成。
基于上述的兼容电能表与用电信息采集终端的检定装置的检定方法, 其特 征在于: 包括以下步骤,
步骤 (1 ) 制定测试方案, 下发测试方案给检测装置;
步骤 (2 ) 根据待检测设备的电气接口位置, 自动控制智能测试表托调整电 流接线端子、 电压接线端子和辅助信号接线端子之间的间距及电流端子框架、 电压端子框架和辅助信号框架的位置;
步骤 (3 ) 智能测试表托调整完成后, 自动上下料机器人给检测装置的各检 测工位上料;
步骤 (4) 上料完成, 通过压接机构和定位机构将待检测设备固定, 自动接 步骤 (5 ) 判断辅助信号接线端子与电能表或者用电信息采集终端的电气连 接要求是否一致, 若一致无需调整, 进行测试; 若不一致, 采用继电器阵列进 行切换, 重新定义辅助信号接线端子后, 进行测试。
步骤 (6 ) 测试完成, 自动拆线, 由自动上下料机器人进行下料, 完成整个 测试, 重复步骤 ( D o
前述的兼容电能表与用电信息采集终端的检定装置的检定方法, 其特征在 于: 所述自动控制智能测试表托调整电流接线端子、 电压接线端子和辅助信号
接线端子之间的间距的步骤如下:
( 1 ) 通过 X轴电流伺服电机控制电流接线端子之间的间距;
( 2 ) 通过 X轴电压伺服电机控制电压接线端子之间的间距;
( 3) 通过 X轴辅助伺服电机控制辅助信号接线端子之间的间距。
前述的兼容电能表与用电信息采集终端的检定装置的检定方法, 其特征在 于: 所述自动控制智能测试表托调整电流端子框架、 电压端子框架和辅助信号 框架的位置的步骤如下:
( 1 ) 通过 Z轴电流伺服电机, 调整电流端子框架与检测面板之间的间距;
( 2 ) 通过 Z轴电压伺服电机, 调整电压端子框架与电流端子框架之间的间 距;
( 3) 通过 Y轴辅助伺服电机, 调整辅助信号框架与电流端子框架 Y轴方向 之间的间距;
(4) 通过 Z轴辅助伺服电机, 调整辅助信号框架与电流端子框架 Z轴方向 之间的间距。
本发明的有益效果是: 本发明兼容电能表与用电信息采集终端的检定装置 及检定方法, 检定装置的每个检测工位都可根据被检对象自动调整测试接线位 置和电气、 信号性质, 接线采用自动压接方式, 全部自动完成, 无需人工干预, 根据测试需求灵活柔性配置可自动完成测试任务, 有效提高设备的利用率, 降 低生产的成本,本发明可以广泛应用于电力企业三相智能电能表和用电信息采 集终端的检定。
附图说明
图 1是本发明的兼容电能表与用电信息采集终端的检定装置的结构示意图。
图 2是本发明的检测工位的结构示意图。
图 3是本发明的智能测试表托的系统框图。
图 4是本发明的辅助信号框架的结构示意图。
附图的标记含义如下:
1: 检定框架; 2 : 检测工位; 3 : 检测面板; 4: 压接机构; 5 : 定位机构; 6: 智能测试表托; 7 : 电流端子框架; 8 : 电压端子框架; 9 : 辅助信号框架。 具体实¾ ^式
下面结合附图对本发明做进一步的描述。
如图 1及图 2所示, 一种兼容电能表与用电信息采集终端的检定装置, 包 括检定框架 1, 检定框架 1为铝型材料构成, 便于将检测过程中的热量散发, 提 高检测精度, 以及重量轻, 便于运输, 检定框架 1 上均匀分布着若干个检测工 位 2, 各检测工位 2包括检测面板 3和位于检测面板 3上方的压接机构 4、 位于 检测面板 3两恻的定位机构 5、 位于检测面板 3下方的智能测试表托 6, 如图 3 所示, 智能测试表托 6包括用于安装电流接线端子的电流端子框架 7、用于安装 电压接线端子的电压端子框架 8和用于安装辅助信号接线端子的辅助信号框架 9, 其中电流端子框架 Ί上设有控制电流接线端子间距的 X轴电流伺服电机和控 制电流端子框架与检测面板 Z轴方向间距的 Z轴电流伺服电机, 电流接线端子 在 X轴的一条直线上, X轴电流伺服电机为控制电流接线端子在 X轴方向的间距 的伺服电机, Z轴电流伺服电机为控制电流端子框架与检测面板 Z轴方向间距的 伺服电机;
电压端子框架 8上设有控制电压接线端子间距的 X轴电压伺服电机和控制 电压端子框架和电流端子框架 Z轴方向间距的 Z轴电压伺服电机, 电压接线端
子在 x轴的一条直线上, X轴电压伺服电机为控制电压接线端子在 X轴方向的间 距的伺服电机, z轴电压伺服电机为控制电压端子框架和电流端子框架 Z轴方向 间距的伺服电机;
辅助信号框架 9上设有控制辅助信号接线端子间距的 X轴辅助伺服电机、 控制辅助信号框架与电流端子框架 Y轴方向间距的 Y轴辅助伺服电机; 控制辅 助信号框架与电流端子框架 Z轴方向间距的 Z轴辅助伺服电机, 辅助信号接线 端子在 X轴的一条直线上, X轴辅助伺服电机为控制辅助信号接线端子在 X轴方 向的间距的伺服电机, Y轴辅助伺服电机为控制控制辅助信号框架和电流端子框 架 Y轴方向间距的伺服电机, z轴辅助伺服电机为控制控制辅助信号框架和电流 端子框架 z轴方向间距的伺服电机。
如图 4所示, 辅助信号框架 9上还设有与辅助信号接线端子连接的单刀双 置继电器, 构成继电器阵列, 继电器阵列用于与电能表辅助测试信号和用电信 息采集终端辅助测试信号相连接, 这里的 X轴辅助伺服电机、 单刀双置继电器 与辅助信号接线端子的数量一致, 一台 X轴辅助伺服电机通过一个单刀双置继 电器控制一个辅助信号接线端子的连接, 继电器阵列用于重新定义辅助信号接 线端子, 测试时通过软件自动控制和切换。
基于上述的兼容电能表与用电信息采集终端的检定装置的检定方法, 包括 以下步骤:
第一步, 制定测试方案, 下发测试方案给检测装置, 这里制定的测试方案 是根据电力行业中国家的仪器仪表测试标准与待检测设备的属性, 属性包括机 械尺寸、 电气接口位置和信号性质等, 而制定的, 本发明的电能表与用电信息 采集终端属性, 为本领域技术人员公众的, 故不一一列出;
第二步, 根据待检测设备的电气接口位置, 自动控制智能测试表托调整电 流接线端子、 电压接线端子和辅助信号接线端子之间的间距及电流端子框架、 电压端子框架和辅助信号框架的位置;
第三步, 智能测试表托调整完成后, 自动上下料机器人给检测装置的各检 测工位上料;
第四步, 上料完成, 通过压接机构和定位机构将待检测设备固定, 自动接 第五步, 判断辅助信号接线端子与电能表或者用电信息采集终端的电气连 接要求是否一致, 若一致无需调整, 进行测试; 若不一致, 采用继电器阵列进 行切换, 重新定义辅助信号接线端子后, 进行测试。
第六步, 测试完成, 自动拆线, 由自动上下料机器人进行下料, 完成整个 测试, 重复第一步, 进行在一台待检测设备的测试。
其中第二步中, 所述自动控制智能测试表托调整电流接线端子、 电压接线 端子和辅助信号接线端子之间的间距, 根据电气接口位置, 步骤如下:
( 1 ) 通过 X轴电流伺服电机控制电流接线端子之间的间距;
( 2 ) 通过 X轴电压伺服电机控制电压接线端子之间的间距;
(3) 通过 X轴辅助伺服电机控制辅助信号接线端子之间的间距。
其中第二步中, 自动控制智能测试表托调整电流端子框架、 电压端子框架 和辅助信号框架的位置, 根据待检测设备的机械尺寸, 步骤如下:
( 1 ) 通过 Z轴电流伺服电机, 调整电流端子框架与检测面板之间的间距;
(2) 通过 Z轴电压伺服电机, 调整电压端子框架与电流端子框架之间的间 距;
( 3) 通过 Y轴辅助伺服电机, 调整辅助信号框架与电流端子框架 Υ轴方向 之间的间距;
(4) 通过 Ζ轴辅助伺服电机, 调整辅助信号框架与电流端子框架 Ζ轴方向 之间的间距。
综上所述, 本发明兼容电能表与用电信息采集终端的检定装置及检定方法, 检定装置的每个检测位都可根据被检对象自动调整测试接线位置和电气、 信号 性质, 接线采用自动压接方式, 全部自动完成, 无需人工干预, 根据测试需求 灵活柔性配置可自动完成测试任务, 有效提高设备的利用率, 降低生产的成本, 本发明可以广泛应用于电力企业三相智能电能表和用电信息采集终端的检定。
以上显示和描述了本发明的基本原理、 主要特征及优点。 本行业的技术人 员应该了解, 本发明不受上述实施例的限制, 上述实施例和说明书中描述的只 是说明本发明的原理, 在不脱离本发明精神和范围的前提下, 本发明还会有各 种变化和改进, 这些变化和改进都落入要求保护的本发明范围内。 本发明要求 保护范围由所附的权利要求书及其等效物界定。
Claims
1、 一种兼容电能表与用电信息采集终端的检定装置, 包括检定框架, 检定 框架上均匀分布着若干个检测工位, 其特征在于: 各检测工位包括检测面板和 位于检测面板上方的压接机构、 位于检测面板两恻的定位机构、 位于检测面板 下方的智能测试表托, 所述智能测试表托包括用于安装电流接线端子的电流端 子框架、 用于安装电压接线端子的电压端子框架和用于安装辅助信号接线端子 的辅助信号框架,
所述电流端子框架上设有控制电流接线端子间距的 X轴电流伺服电机和控 制电流端子框架与检测面板 z轴方向间距的 Z轴电流伺服电机;
所述电压端子框架上设有控制电压接线端子间距的 X轴电压伺服电机和控 制电压端子框架和电流端子框架 z轴方向间距的 Z轴电压伺服电机;
所述辅助信号框架上设有控制辅助信号接线端子间距的 X轴辅助伺服电机、 控制辅助信号框架与电流端子框架 Y轴方向间距的 Y轴辅助伺服电机; 控制辅 助信号框架与电流端子框架 z轴方向间距的 Z轴辅助伺服电机;
所述辅助信号框架上还设有与辅助信号接线端子连接的单刀双置继电器, 构成继电器阵列, 所述继电器阵列用于与电能表辅助测试信号和用电信息采集 终端辅助测试信号相连接。
2、 根据权利要求 1所述的兼容电能表与用电信息采集终端的检定装置, 其 特征在于: X轴辅助伺服电机、单刀双置继电器与辅助信号接线端子的数量一致。
3、 根据权利要求 1所述的兼容电能表与用电信息采集终端的检定装置, 其 特征在于: 所述检定框架为铝型材料构成。
4、 基于权利要求 1的兼容电能表与用电信息采集终端的检定装置的检定方
法, 其特征在于: 包括以下步骤,
步骤 (1 ) 制定测试方案, 下发测试方案给检测装置;
步骤 (2) 根据待检测设备的电气接口位置, 自动控制智能测试表托调整电 流接线端子、 电压接线端子和辅助信号接线端子之间的间距及电流端子框架、 电压端子框架和辅助信号框架的位置;
步骤 (3) 智能测试表托调整完成后, 自动上下料机器人给检测装置的各检 测工位上料;
步骤 (4) 上料完成, 通过压接机构和定位机构将待检测设备固定, 自动接 步骤 (5) 判断辅助信号接线端子与电能表或者用电信息采集终端的电气连 接要求是否一致, 若一致无需调整, 进行测试; 若不一致, 采用继电器阵列进 行切换, 重新定义辅助信号接线端子后, 进行测试。
步骤 (6) 测试完成, 自动拆线, 由自动上下料机器人进行下料, 完成整个 测试, 重复步骤 ( Do
5、 根据权利要求 4所述的兼容电能表与用电信息采集终端的检定装置的检 定方法, 其特征在于: 所述自动控制智能测试表托调整电流接线端子、 电压接 线端子和辅助信号接线端子之间的间距的步骤如下:
( 1 ) 通过 X轴电流伺服电机控制电流接线端子之间的间距;
( 2 ) 通过 X轴电压伺服电机控制电压接线端子之间的间距;
(3) 通过 X轴辅助伺服电机控制辅助信号接线端子之间的间距。
6、 根据权利要求 4所述的兼容电能表与用电信息采集终端的检定装置的检 定方法, 其特征在于: 所述自动控制智能测试表托调整电流端子框架、 电压端
子框架和辅助信号框架的位置的步骤如下:
( 1 ) 通过 Z轴电流伺服电机, 调整电流端子框架与检测面板之间的间距;
(2) 通过 Z轴电压伺服电机, 调整电压端子框架与电流端子框架之间的间 距;
(3) 通过 Y轴辅助伺服电机, 调整辅助信号框架与电流端子框架 Y轴方向 之间的间距;
(4) 通过 Z轴辅助伺服电机, 调整辅助信号框架与电流端子框架 Z轴方向 之间的间距。
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| CN107589393A (zh) * | 2017-08-30 | 2018-01-16 | 国网江苏省电力公司电力科学研究院 | 一种适用于单相智能电能表和采集器的兼容检定装置 |
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