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新闻与活动  >  成功案例  >  Industrial Hotspot
  The power of industrial wireless in the Cumberland Mountains…
The power of industrial wireless in the Cumberland Mountains… / Industrial Hotspot

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The power of industrial wireless in the Cumberland Mountains…

Clintion Wireless Substation

Not every company knows how to take off their training wheels and ride into the streets of wireless industrial automation.

Shed the wheels of network cables and a company can potentially get more flexibility than ever before while moving data securely. Sure, industrial wireless security needs to be cost-effective and reliable. Buying the right modems and keeping up-to-date with the latest high-tech wizardry in wireless know-how can loosen the cables that bind applications and devices to costly networks. Nowadays, the idea of being wireless, secure, and cost-effective means companies can escape the thought of wiring across miles and miles of uncharted terrain. Just see what a Tennessee utilities board did when it wanted to move data through remote substations.

The company had to route data through thirteen substations, two of which were tucked away in the Cumberland Mountains. It knew laying ground wires in such an operation with remote locales would not be cheap. Wires would have to be installed over vast distances or laid locally. In order to access data, staff would have to visit hard-to-get areas. And who has that kind of time?

A while back, the end user had installed a SCADA system through Survalent Technology, then set up an Ethernet network using fiber optic cables transporting DNP 3.0 over TCP/IP to poll the RTUs in each substation. That was in 11 out of their 13 electrical distribution substations. The other two substations, given their locations in extremely isolated mountainous terrain, simply were not cost-effective when it came to fiber installation. Both remote substations are outage-prone, with the furthest an approximate one-hour drive through winding mountain roads. The board realized that there would be huge benefits if communications could be established to these two stations.

Surrounded by rugged terrain at two remote substations, the utilities board decided to improve data management by exploring various data-gathering methods. It researched options such as leased phone lines, licensed radio, unlicensed radio, and even satellite. After a thorough evaluation, the board concluded unlicensed radios offered a cost-effective, reliable, and secure solution. They opted for ProSoft Technology’s industrial-grade solutions.

The two Cumberland substations presented major obstacles in trying to obtain line of sight communications back to the end user’s main offices. ProSoft Technology’s technical support personnel helped develop a path study that identified locations along mountaintops where repeaters could obtain the desired path. The first repeater location posed no problem. The company had already set up a mountaintop radio repeater for licensed voice communications to company vehicles. The second repeater location made for a difficult challenge. The proposed remote mountain site was located using a GPS unit. Inaccessible to any ordinary vehicle, the end user hired a local grading contractor to transport a 60-foot wood pole to the site to install using a bulldozer. ProSoft Technology used a solar repeater kit and necessary antennas to complete the project.

ProSoft installed Frequency Hopping Ethernet radios with serial servers in both substations.

“We are pleased with ProSoft Technology’s wireless equipment. Instead of having to install separate networks, we have been able to build a single wireless network to meet the needs of our Ethernet equipment, as well as our serial equipment,” a representative of the utilities board said.

He noted that the utility has “been able to save numerous man-hours by being able to remotely monitor and control devices that normally would take us hours just to get to.”

In the first substation, one radio monitors station-loading from a Schlumberger Q1000 meter using the DNP 3.0 protocol. The meter has an RS-232 connection to the radio’s serial port, and is directly polled from the SCADA master station using the IP address and port of the radio. The old feeder breakers in this station have been replaced with new Cooper VSA breakers and Form 6 controls, which provide Ethernet connectivity. The new electronic controls are connected to the ProSoft Technology radio through an additional Ruggedcom Ethernet switch, thus prohibiting the need to ever install an RTU in this station.

The power of industrial wireless in Cumberland 1

The second substation has a Schlumberger Q1000 meter connected to the serial port of the radio, while a Cooper Form 6 control connects to the Ethernet port of the radio. Both are polled using DNP 3.0 over TCP/IP directly from the SCADA master station. Future planning will upgrade the regulator controls within the station to Beckwith M2001C controls that also have available Ethernet ports and use DNP 3.0. An additional Ethernet switch or hub is needed, although only requiring a single radio and no RTU.

The end user has begun the second phase of its SCADA system installation: communications with pole top devices (i.e. reclosers, regulator controls, automated switch controls, capacitor controls) located on distribution lines. The primary method for communicating to these devices will be with ProSoft Technology’s radios. Currently ProSoft’s radios have successfully connected to and are communicating with Cooper Form 4C recloser controls, Cooper Form 6 recloser controls, and S&C Model 5801 automated switch controls. The only protocol available for the Cooper Form 4C control is Cooper 2179, which is not available on the SCADA master. The communications path to these Form 4C controls comes off of a comm port on a substation RTU, hits a serial radio, then hits the same repeaters that are used for substation communications, finally ending up at a serial radio connected to the control.

The end user plans to connect to approximately 10-15 additional Cooper recloser controls, both Form 4C’s and Form 6’s. The 4C’s will be connected to a serial radio and polled from an RTU, whereas the Form 6’s will be connected to a Ethernet radio and polled directly from the SCADA master. There are plans to upgrade 15-20 regulator controls with Beckwith M2001C controls that provide Ethernet connectivity and are polled directly from the SCADA master. Because S&C automated switch controls only have serial ports available, plans to install additional controls require Ethernet radios with an embedded serial server. Connectivity through the required radios allows the controls to be polled using DNP 3.0 over TCP/IP directly from the SCADA master, without the need of an RTU. There are also plans to use ProSoft Technology radios for communications to capacitor controls for the purpose of power factor correction.

The utility appreciates the ability to use the same radio network, and therefore the same set of repeaters, no matter which type of radio (serial, Ethernet, Ethernet with embedded serial server) that they need to install. The company originally installed 23 radios, which they hope to double within the next 6 months. With such robust integration in their remote networks, any installed radio can then become a repeater for future radios.

Learn more about ProSoft Technology’s Wireless Solutions here. 

  ProSoft 直扩电台在石油行业中大密度的使用案例
ProSoft 直扩电台在石油行业中大密度的使用案例 / Industrial Hotspot

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ProSoft 直扩电台在石油行业中大密度的使用案例

科克雷尔牧场油田注水项目是一个耗资巨大旨在提高石油产量的项目, 它坐落于美国德克萨斯州的潘汉德尔。卡努石油公司成功地利用高新技术从一度曾被认为“已被挖空”的油井里重新获得了石油,在开采过程中利用高压水的水流的流动形成的力量推动原油从油井出地面。

位于得克萨斯州的Boss Automation of Spearman公司被邀请到设计和安装卡努石油的分散自动化平台和控制网络以便监视流向油井的高压水的流量与压力。

以他们在自动化方面的经验, 该项目需要对以往传统的SCADA系统进行改进,从而能设计和实施一整套的新型的、具有全自动化自我监测功能的数据采集与监视控制系统的新型SCADA。

这个系统需要去采集、组合、传送那些油井和注射器等现场的数据,最后,再将这些数据传送到主站。 这就使我们可以用互联网来监视和控制那些生产现场的日常操作,同时也可以利用那些采集上来的数据来做出详细的生产模型。

经过全面地分析考量这个项目,得出的结论是:它必须要包含可靠性高、可维护性优良、简单易用,另外,这个系统能否在当地获得支持也很重要。

后来在Rexel的帮助下(Rexel是当地的一家AB的分销商),Boss Automation of Spearman 公司决定用一个由AB的硬件、罗克韦尔自动化的软件、ProSoft无线通信技术组成的解决方案来吸引人们的目光。

Boss Automation of Spearman 公司对这些自动化产品与软件非常熟悉,同时也有以往成功的应用经验,使得他们对这个组合解决方案非常地有信心。

这个SCADA系统由一个在主站上的带着4个ControlLogix子站和超过100个定制的远程终端单元(RTU)组成的,其中每个RTU又由一个罗克韦尔的MicroLogix1100 PLC和一个ProSoft工业热点电台组成。主站和4个子站象征着项目的网络主干路。

同时,4个子站中的每一个子站在它们各自的子网络中都还扮演着“主站”的角色。所有油井、注射器到各个子站以及所有子站到主站的通讯都采用了ProSoft Technology无线解决方案来完成。

保罗.布鲁克斯,罗克韦尔自动化网络系列产品的商务经理这样说道,“为了这个案例应用,ProSoft的无线技术部为该系统集成提供了一个通讯主干网络,它是一个可靠的、工业级别的、透明的网络,从而使卡努石油公司成功地对工艺数据进行远程监控。

 

在主站上,使用罗克韦尔自动化公司的RSView 32软件,可以将人机界面(HMI)用于主站中的系统。配套的图形界面软件也已经被验证为具有用户友好界面、且具有信息信件使能功能的成功软件,它可以自主随时地通过拨打操作人员手机以语音方式给操作员汇报详细的报警信息。

基于ProSoft技术的RadioLinx OPC服务被用在远程处理计算机上去监视无线网络的通信状态。

一个令人印象深刻的数字是:超过3500个离散型输入/输出型数据和1000个模拟量数据点被打包在一起并通过无线网络以大约11Mbps的速度传送到网络中主要的主站中,在那里数据包组装成数据日志模型,然后这些数据日志模型由卡努石油特有的经过授权的模型软件来解析、存储。

 Rexel为这个项目提供了后勤保障与技术支持,而为了慎重对待这个耗时长、规模大的无线网络的建设,ProSoft Technology公司在整个项目的建设与实施中自始至终提供了成功的工程支持。

帕特里克Haga,ProSoft Technology公司的无线技术工程师这样评论道:“从这个项目的技术层面来讲这是一个成功的项目实施案例,主要的理由就是在实际实施项目之前我们做了大量的规划以及对这个项目的慎重对待。

 

 

我和 BossAutomation of Spearman 公司的控制工程师们花了大量的时间去学习怎样利用 ProSoft 公司的 Pathloss 软件,在项目进行安装之前以及整个实施过程中,我们合作地非常紧密,而且合作的领域很广,不光在网络结构的布局上,还包括PLC的报文传送的策略上。

“项目的整个网络覆盖在大约12平方英里的地理范围里其中最长的数据链路大约有2英里。还有就是,大部分的电台都被放在一个大约只有3平方英里的区域里面,这就会引起一个焦虑,那就是“如何在这种规模的大密度的无线网络里,设置 PLC 的信息报文通讯方式将显地特别重要。” 帕特里克Haga这样说道。“如果所有的电台都设法同时去通讯,你就会很快因为射频带宽碰撞和重试从而增加网络带宽的负载压力,最后会使整个网络瘫痪掉。”

帕特里克Haga继续说道,“考虑这一点,利用 ProSoft 电台具有 IGMP 功能的特性,我们建立一个采用令牌类型模式通讯的网络结构而不是所有的电台都试图在同一时间进行通讯。在成功地安装这样规模的无线网络之前需要进行大量的规划设计,最后,ProSoft公司的技术支持小组提供了非常好的规划帮助。

Boss Automation of Spearman 公司的克里斯. 迪肯评价时这样说,“这个处理过程是非常可靠的、持续的,本质上是一个自主管理运行的计算机站点。从主要的 SCADA 监测站里,操作人员能看到油井的虚拟示意图以及油井里面正在执行的操作,此外,还能看到远程终端和控制单元采集与发送的数据。

该项目投入运行于2008年的春天,从那以后到现在接近生产零停机时间。“无线网络无缝地、可靠地工作,因此它实际是透明的对于用户来讲。” 迪肯阐述道。“当所有的规划与计划都完美实现之后,我问那些客户喜不喜欢无线网络时,他们的回答却是:无线网络是什么?”

 

ARC咨询集团的哈里.福部斯说道,“科克雷尔牧场油田注水项目说明了3个关于工业无线网络的重点:

第一,无线网络对于象科克雷尔牧场油田注水此类的 SCADA 项目来讲是必不可少的。

第二,最终客户需要选择可靠的、工业级别的、经过现场实际验证的产品,来提供一个长期稳定的无线解决方案。

第三,经过精心设计好的无线网络能以高可靠性、高速地在SCADA系统中传送数据。事实上,正是因为这高可靠性、高速性,使得最终客户几乎忘记了无线网络的在。”

 

 

ProSoft Technology 上海(美国普索科技有限公司上海代表处)
 上海市徐汇区虹梅路1905号远中科研楼101室
 电话: +86.21. 5187.7337
 http://cn.prosoft-technology.com/

Downloads

CANO SCADA_2009.pdf 1.33 MB
  ProSoft 跳频电台(RLX-IFH)如何减少大型设备的停机时间
ProSoft 跳频电台(RLX-IFH)如何减少大型设备的停机时间 / Industrial Hotspot

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ProSoft 跳频电台(RLX-IFH)如何减少大型设备的停机时间

在美国阿拉玛州马拉卡的盖斯泰普工厂里,几乎所有的设备都是体积巨大的。地面是巨大的混凝土板,突兀的站立在地面之上的是两个重达2000吨以上的巨人,两台巨型压力冲压机床。为了适应这两台巨大的“野兽”,天花板被高高地了吊起来,屋子里灯光暗淡。在这个空旷的房间里,除了金属之间猛烈地撞击声,你几乎听不到其他任何的声响。

然后是一片寂静。。。。

“好吧,给你们的太太打电话吧,告诉她们今天我们又要回家很晚了了,为了让这些该死的“怪物”从新再工作起来,我们不得不多花些时间陪伴他们了”维护保养组的组长麦克悻悻地对他的组员说道,“这简直是在折磨我们。”

这已经不是第一次发生这样的事情了。盖斯泰普工厂内运转着170多台各种功能的冲钻设备,但是这两台“大个子“却经常会出一点“小毛病”,至少每个季度通讯电缆都会脱落一次,而每次发生这种情况都会造成整个工厂停工2个小时以上。

 检修记录

盖斯泰普是一家总部设在西班牙的全球性的汽车零部件供应商,他们在全球17个国家设有工厂。使用他们产品的多是行业内的巨头,高端客户有,奔驰,保时捷,宾利,宝马等,而福特,日产,通用则也在更大量的使用他们的产品。而这家马卡拉的工厂所生产出的产品大部分是用来供给阿拉玛州的奔驰车厂的。他们每小时要利用这两个“巨兽“制造出1800个部件,但是让所有人绝望的是,两台设备由于控制电缆经常性的损坏和脱落,造成了大量的停机时间。

“我们现在使用的是每英尺57美金的同轴电缆,而每次停机我们都要更换掉165英尺的电缆”,厂里抱怨道。

如果不计停产所造成的损失,单单更换电缆每次就要有9400-9500美金的费用。如果计算停产的损失每个小时大约是2500美金,幸运的话2个小时可以修理完毕,每次出现这种问题就会给厂里造成约14500美金的损失。

比这更遭的是,这种事每两三个月就要发生一次。

实际问题

这两台“巨兽”的工作原理并不复杂,只是,滑轨上的底座带动模具,不停的冲压出需要零件来。但是最大的问题在于,由于冲床不停的水平移动,会同时带动连接的电缆移动,这样电缆会不可避免地经常地被卷进底座与滑轨的空隙,继而卡短电缆,造成停机。

无论如何盖斯泰普都需要一个稳定工作的网络。他们已经受够了没完没了的停工。但是,如果使用无线解决方案,是否真的可以带来一个通讯性能良好,工作稳定的网络么?要知道现场唯一可以合适安放电台的地方就是滑轨的底部。

用厂里人自己的话说“我们是在寻找一种可以穿透10英寸钢板的无线电台”。

解决方案

既然工厂已经下定决心寻找一种可以穿透钢板的电台来替代电缆的话,当地罗克韦尔自动化的分销商为他们推荐了每台冲床使用3个由ProSoft 公司提供的 RLX-IFHE 的跳频电台配合现场应经存在的罗克韦尔的 Contrologix ,一起解决这个难题。

ProSoft 专业的无线产品经理凯文解释道:“由于滑轨底部和控制冲床的 PLC 之间有遮挡存在,所以需要通过中间加放中继来解决这个问题。而这个应用是在一个封闭的环境内,如果使用普通的电台产品,加装中继器,电台发出的无线信号,经过墙壁等遮挡物的反射之后,会在不同的时间到达另一个接受电台,这样经过多重的反射之后,会不可避免地带来多径干扰,降低系统的稳定可靠性。

但是如果使用了跳频的电台,电台的带宽频点无时无刻的都在随机的跳变,接收方在同一个时间内,只接受和发射方跳频图谱相同的信号,而会忽视其他不相关的信号,这样最大限度上的避免了诸如 802.11这样的设备会带来的多径干扰的问题。

 ProSoft 的跳频电台的通讯速率达到了 1.1Mbps ,又几乎可以媲美普通的 802.11 的电台产品,这样又不会影响这个系统的通讯速度。

 

优良表现

如今厂里的工程师都说“我们找到了一种天才的解决方案,原来我们担心的遮挡问题都被打消了,似乎这个电台可以隔着巨大的钢板去的读取各种控制数据,而通讯稳定且快捷。无论现场的条件如何苛刻,只要我们选择正确的技术,并且正确的运用它,一切难题都是可以得到解决的”。

盖斯特普做了一个评估,在这个马卡拉的工厂中,通过  ProSoft 产品的帮助,每年可以为他们节约174000美金的额外开支。

“现在我们都为你们无线产品的表现感到骄傲,我可以按时回家陪我妻子了,我很高兴。“当这套系统正常运行两年后,我们的维护组长麦克开心的说。

其实类似的问题在各种工厂和车间内都会存在,ProSoft -Technology 的工程师,希望借助我们在国内外的众多成功案例中汲取的宝贵经验,和您一起找到合理的解决办法。

 

Learn more about ProSoft Technology’s Wireless Solutions here. 

Downloads

Gestamp Auto_2008.pdf 475.73 kB
  为终极刺激体验升级通信功能
为终极刺激体验升级通信功能 / Industrial Hotspot

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The legacy generated content

为终极刺激体验升级通信功能

By Lauren Robeson

Zamperla Disk'O Coaster

安东尼奥·赞佩拉是一家大型主题公园景点公司,其游乐设施可在全球范围内体验,为所有人提供服务:所有年龄段的过山车爱好者,以及不那么热衷于寻求刺激的朋友。即使对前者来说,圆盘过山车也绝对是一次冒险:它基本上可以让坐在朝外的座位上的骑手摇晃和旋转,在300英尺(100米)的赛道上以高达43英里/小时(70公里/小时)的速度加速时提供视觉上的自助餐。对骑手来说失重的感觉只会增加目标观众的兴奋感。

对于许多公园游客来说,这是一个重要的景点,也是赞佩拉在骑乘艺术性和运动性方面致力于跳出框框思考的最好例子。

总而言之,这是一次你想尽可能多做安全检查的旅行。 

三年前,在意大利维琴蒂纳的阿尔塔维拉,赞佩拉开始进行测试,以使磁盘杯垫更安全。他们一直在使用一个非安全I/O可编程逻辑控制器和一个更传统的基于标准全向天线的蓝牙无线系统。考虑了不同的解决方案,Zamperla最终决定选择一个包含罗克韦尔CompactLogix的设置,该解决方案还涉及到ProSoft Technology的工业热点以太网无线电台(用于安全I/O)以及PowerFlex的通信实现 DC和位于解决方案的远程端的PowerFlex 700S驱动器。

ProSoft的工业电台是由罗克韦尔自动化公司Michele Piccoli和Davide推荐的。 

罗克韦尔自动化公司Michele Piccoli说:“多亏了ProSoft Technology的无线解决方案,才有可能向Zamperla提供完整的方案。一起评估、测试、实现和设置解决方案变得容易了。” 

ProSoft Technology区域销售经理Andrea Mazzucchelli与他们合作,提出了一个有助于确保磁盘过山车乘客安全的解决方案。 

新通信系统的主要目标是取代以前的蓝牙通信设置,包括用于分布式安全点I/O™。安全点I/O用于监控安全带和过山车车门。ProSoft的无线电台也提高了可靠性和吞吐量,与CompactLogix一起工作,为寻求刺激的人提供平稳、安全的乘坐体验。当安全是重中之重,而设备的移动速度通常和磁盘过山车一样快时,必须有高度可靠的连接。

Zamperla的总工程师Fabio Berti说,工业热点无线电台有助于改善通信系统。这些无线电台支持高达300 Mbps的快速射频数据速率,每秒提供高性能的数据包,并确保可靠的通信。该公司还感谢能够使用HMI监控电台的性能和状态,感谢诊断标签。在系统性能和易用性之间,Zamperla看到ProSoft在罗克韦尔自动化基础设施内的无线电台提供了一个非常好的解决方案。 

“目标是提高应用程序的效率和安全性,”Berti先生说。“得益于ProSoft基于无线以太网的解决方案,可以使用安全I/O并提高通信的数据速率,满足Zamperla的需求。”

ProSoft Technology的技术支持承诺是额外的收获。公司为所有产品提供技术支持,确保能尽快收到世界各地的ProSoft区域办事处专家的意见。

Mazzucchelli说:“我们很自豪能够为赞佩拉提供一个无线解决方案,完全符合磁盘过山车的要求”。

 

更多信息:

有关ProSoft技术的工业无线解决方案的更多信息,请访问http://psft.com/BJK. 

有关A.Zamperla S.p.A的更多信息,请访问www.zamperla.com.

  Keeping currents safe for aluminum supplier
Keeping currents safe for aluminum supplier / Industrial Hotspot

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The legacy generated content

Keeping currents safe for aluminum supplier

By Lauren Robeson

Many people use something that’s aluminum-based fairly often. Whether you’re drinking a canned beverage or covering a dish, chances are you’re not thinking of how the material came to be produced. 

The process of aluminum production is a long and potentially hazardous one if precautions are not in place. Clauser Dunkerque, a company based in France, knows the challenges involved and the precision required, and set about to strengthen communications in the aluminum production process for a supplier in the Middle East. 

Clauser Dunkerque photo01low

Clauser Dunkerque primarily manufactures high-current conductors and special machinery for use in aluminum production. In this case, it was manufacturing an earthing trolley for the company, and it needed to ensure strong, clear communications. The device is used in a facility filled with potlines. These reduction pots hold extracted aluminum, and are electrically connected in a series. Once in the pots, the aluminum melts down and is divided. A potline can feature 1,000 or more pots in some cases, with high current to match. 

With such a high-current application, it’s important to ensure that any potential leaky current is taken care of as soon as possible. A leakage can be caused by a variety of factors, including an insulation fault or humidity. In the best-case scenario, a leak left unfixed causes energy loss – and potentially losses in productivity and profit. Worst-case scenario, this can be hazardous to workers and cost a lot of money – if one flash occurs due to an unexpectedly high current, it could kill the substation, costing the company 100 million to 200 million euros. 

So clear communications are a must in this type of facility. But they can be tricky: Running wires or cables from inside the potline to an outside environment wasn’t possible in this operation. And even some wireless radios could face an issue if used in the facility thanks to interference caused by electrical noise. Previously, the communications were hard wired to FLEX™ I/O and had to be connected and unconnected every time the trolley was moved. That led to maintenance issues, with connectors being damaged, and did not allow for monitoring of the current. 

That’s where ProSoft Technology came in.

Clauser Dunkerque photo02low

“We already had a business relationship with ProSoft Technology,” said Clauser Dunkerque Project Manager Fréderic Vervelle, who had worked with Feby Mohammed and Aurélien Fabre of ProSoft’s EMEA office in the past. “We also liked that local support was available.” 

ProSoft Technology’s Weatherproof and Industrial Hotspot radios were used with MIMO antennas in conjunction with a Rockwell Automation® ControlLogix® system. The Weatherproof radios are perfect for this rugged application, and the 802.11n MIMO and channel bonding allows for high-resolution video monitoring while the I/O is being controlled – ideal for this application, where real-time information is crucial. The Industrial Hotspots offer Ultra-Fast access point switchover times of less than 10 ms, which came in handy as the earthing trolley connected to the closest repeater. Two master radios connected on different channels to avoid interference and ensure redundancy between the repeaters.

“Our on-site tests went well. We especially liked that the system was flexible with reduced configuration – it took just half a day to configure the radio system, and less than a week for the full deployment of the application,” Mr. Vervelle said. “We also like that ProSoft’s solution was approved by the Telecommunication Regulatory Authority – if it hadn’t been, we would have had declaration fees and a bandwidth-based payment.”

Now this reliable communications network helps ensure safe division and processing of aluminum.

 

Find out more about ProSoft Technology’s Industrial Wireless Solutions at http://psft.com/BU5.

  Wrapping five bottles per second
Wrapping five bottles per second / Industrial Hotspot

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The legacy generated content

Wrapping five bottles per second

In Altavilla Vicentina, Italy, a Clever Sleever Machine places and shrink-wraps decorative sleeves on bottles at a rate of 18,000 pieces per hour. That’s five pieces per second. So, imagine how much money would be lost every time they have to stop production to replace a damaged or broken slip ring.

That was the problem facing Clever Machines.

Clever Success

Clever provides a wide variety of sleever machines and heat-shrink tunnel applicators. These machines can perform every type of sleeve application required by the client, at different production speeds, including linear and rotary machines suitable to apply full and partial sleeves and safety seals. These machines can be found in many different packaging applications including food and beverage, cosmetics, and pharmaceuticals.

“Through constant technological research, in conjunction with our clients, we are committed to finding solutions to our clients’ needs,” said Tagliaferro Silverio, owner of Clever Machines.

So, when a client came to them with the need to reduce downtime on their Sleever Machine because of the time-consuming nature of maintaining slip rings, Clever contacted Rockwell Automation®.  Rockwell Automation suggested they use ProSoft Technology’s Fast Roaming Industrial Hotspot radios and a 5 GHz radiating cable as the antenna.

The Industrial Hotspot supports Access Point, Repeater, and Bridging and Client modes, and delivers fast data rates up to 300 Mbps.

“The Fast Roaming feature of this radio maintains seamless, high-speed connections particularly well-suited for moving equipment like Clever’s Sleever Machine,” said Andrea Mazzucchelli, Regional Sales Manager for ProSoft Technology.

“This was the excellent packet-per-second performance and robust communications we were looking for,” said Andrea Parlato, Electrical Division Technical Manager for Clever.

Now a CompactLogix™ L36 communicates to the POINT I/O™ through ProSoft Technology’s radios, providing fast and reliable data from their rounding tables, which apply the labels and heat-seal them to the bottles. 

The radiating cables essentially replace the slip rings, virtually eliminating the expensive downtime associated with maintaining them. A radiating cable is a long, flexible antenna with slots to radiate RF signals that can be installed around corners, along monorail systems and through tunnels to propagate wireless data signals in situations that are tough or impossible for traditional antennas. Since the radiating cable antenna can be mounted within inches of where the signal needs to be received, it isolates the wireless signal from going to other machines that may be on the plant floor. And the cable comes in multiple lengths to meet the needs of most applications.

“The radiating cables have been specifically tested to work with the 802.11n radios, making this a field-proven solution instead of those expensive-to-maintain slip rings,” Mazzucchelli said.

Learn more about ProSoft Technology’s Wireless Solutions  here.  

   无线遥控汽车------ProSoft工业热点电台成功案例
无线遥控汽车------ProSoft工业热点电台成功案例 / Industrial Hotspot

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无线遥控汽车------ProSoft工业热点电台成功案例

无线遥控汽车现在有了全新的含义…

这车如此好,所以现在都不允许进入澳洲车展了(其他车无法与之媲美)。

Custom Car Psycho

外面用明亮的紫色油漆和里面明亮的红色内饰,你不能说这是曾经的半普通的1986福特XF猎鹰。这是一辆名副其实的“肌肉车”。在一个名为“The Psycho”的汽车展,其赢得顶级油漆,顶级起落架,顶级发动机舱,顶级内饰,顶级跑车,五大顶级街道机和澳大利亚最酷车的称号。

不是很多。

下面这个婴儿的引擎罩不仅仅是一个强大的引擎,还是一个可编程逻辑控制器通过ProSoft Technology工业无线电台和汽车的不同部件进行通信。

PLC的人想起汽车大型汽车装配线,车的每一个部分随车从开始到结束一起向下移动。汽车本身的控制功能是不同的故事。PLC什么时候开始那样做的?

就是从Greg Maskells在澳大利亚集成他的一辆定制汽车开始。

遥控车现在有了全新的含义。是的,这些天我们都看到了标准遥控启动功能的汽车。远程虚拟控制几乎车的每个其他功能,从引擎盖到躯干和悬挂,这就是PLC和ProSoft Technology工业无线热点到达的地方。

 

Maskells生产大约两到三台定制的汽车一年。“这是第一次把[PLC]用在我们汽车上,”Maskells说。

什么能切换18个开关来远程遥控汽车功能,几个工业自动化设备就能解决。怎么把所有汽车展的奖杯带回家?

Maskells (Maskell在澳大利亚的订制与经典公司)要求Garry Lomer建立了一个基于工业自动化知识定制车系统。Lomer 说” 我用我的工业背景去选择具有坚实可靠的软件和硬件组件”

“在这个特别的汽车,高压点火线圈在DASH下的监控,是罗克韦尔自动化MicroLogix™PLC和®ProSoft Technology工业热点电台来完成。

每辆车通过赫斯曼交换机连接到一个PanelView Plus 600 触摸屏。HMI功能作为汽车的触摸屏。

 

Maskells通过使用两个ProSoft Technology 900 Mhz无线电台链接车到PanelView 1000,可以从远程触摸屏操作整个汽车。引擎盖打开或关闭,没问题;后备箱打开或关闭,当然可以;无线电,可以的;悬挂上升或下降也没问题。很快ProSoft的i-View软件可以在300米远的距离操作上述所有的功能。

 “我们汽车现在已经有ProSoft工业热点电台来实现远程编程的PLC和触摸屏。我们正在研究使用ProSoft的I-VIEW iPhone应用程序通过iPhone操作汽车,”Maskells说。

Maskells说,他们很喜欢在车上这些设备的性能。他说,”PLC”控制所有电气系统包括启动、关闭、燃油泵、热风扇、水泵、挡风玻璃,窗户和收音机”。

此外,该车采用了悬挂系统,可以通过ProSoft工业热点电台来控制调整空气压力。此外,汽车门,盖,和启动是通过ProSoft系统电动执行器控制的。

Maskells说”当客户想要远程控制他们的汽车的时候,我就计划用PLC/ProSoft工业无线车载控制系统”。

那个汽车狂人花了10000个工时来建造。它的主人来自澳大利亚南部的塔斯马尼亚市霍巴特。

 

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