基于多點網(wǎng)絡(luò)的水廠自動監(jiān)控系統(tǒng)設(shè)計Design of MPI Based Automatic Monitoring and Control System in Water Works劉 美 俊(湖南工程學(xué)院,湘潭411101)摘要針對水廠工作水泵多、現(xiàn)場離控制站距離遠(yuǎn)的特點,提出了一種基于MPI多點網(wǎng)絡(luò)的自動監(jiān)控系統(tǒng)的設(shè)計方法,分析了系統(tǒng)的工作原理,介紹了系統(tǒng)中數(shù)據(jù)的采集與處理、主站與從站的通信原理以及系統(tǒng)軟件的設(shè)計。由于這種系統(tǒng)的主、從站PLC之間采用MPI網(wǎng)絡(luò)通信,具有運行可靠、性能價格比高的特點,所以適用于中小規(guī)模水廠的分布式監(jiān)控場合。關(guān)鍵詞多點網(wǎng)絡(luò)主站從站監(jiān)控系統(tǒng)Abstract Ina ccordancew ithth efe atuersof w aterw orks,i. e. ,manyp umpsin o perationa ndth ep umps, farfor mt hec ontrolst ation,th em ethodo fdesigninga na utomati(〕monitoringa ndc ontorlsy stemb asedo nM PIis p resented.Th eo perationalpr incipleo fth esy stemi san alyzed,th ed atac olection,data processing; communication between master station and slave station as wel as design and system software are discussed. BEcause MPI network communicationis used among master station, slave stations and PLC, the system is reliable and high cost-efective. It is, suitable for smal and mediumsized water works for distrbuted monitoring and control.Keywords MPI Masterst ation Slaves tation Monitoringa ndc ontorlsy stem 自來 水 廠 的自動控制系統(tǒng)一般分為兩大部分,一對組態(tài)硬件要求較高,投資較大。相對而言,MPI網(wǎng)是水源地深水泵的工作控制,一是水廠區(qū)變頻恒壓供絡(luò)速度可達(dá)187.5 M bps,通過一級中繼器傳輸距離可水控制,兩部分的實際距離通常都比較遠(yuǎn)。某廠水源達(dá)Ikm 。根據(jù)水廠的具體情況,確定以MPI方式組地有3臺深井泵給水廠區(qū)的蓄水池供水。水廠區(qū)的成網(wǎng)絡(luò),主站PLC為S7-300系列的CPU3121FM,從任務(wù)是對水池的水進行消毒處理后,通過加壓泵向管站為S7-200系列的CPU222。這樣既滿足了系統(tǒng)要路恒壓供水。選用Siemens公司的S7系列可編程控求,又相對于Profibus網(wǎng)絡(luò)節(jié)省了三分之一的成本,制器(PLC)和上位機組成實時數(shù)據(jù)采集和監(jiān)控系統(tǒng), 這種分布式監(jiān)控系統(tǒng)具有較高的性能價格比。系統(tǒng)對深水泵進行遠(yuǎn)程控制,對供水泵采用變頻器進行恒中PLC的物理層采用RS - 485接口,網(wǎng)絡(luò)延伸選用壓控制以保證整個水廠的電機設(shè)備安全、可靠地運帶防雷保護的中繼器,使系統(tǒng)的安全運行得到了保行。證。MPI網(wǎng)絡(luò)的拓?fù)浣Y(jié)構(gòu)如圖1所示。1 多點網(wǎng)絡(luò)(NWI)監(jiān)控系統(tǒng)的組成Sie me ns 公司S7系列PLC通常有MP」多點網(wǎng)絡(luò)與Profibus現(xiàn)場總線網(wǎng)絡(luò)兩種組網(wǎng)方式。Profibus現(xiàn)場總線的應(yīng)用目前較為普遍,通用性較好,它由Profibus一DP, Profibus一FMS, Profibus一PA組成。Profibus - DP型用于分散外設(shè)間的數(shù)據(jù)傳輸,傳輸速率為9.6kbps一12Mbps,主要用于現(xiàn)場控制器與分散1/0之間的通信,可滿足交直流調(diào)速系統(tǒng)快速響應(yīng)的時間要求,特別適合于加工自動化領(lǐng)域的應(yīng)用;Profibus - FMS主要解決車間級通信問題,完成中等傳輸速度的循環(huán)或非循環(huán)數(shù)據(jù)交換任務(wù),適用于紡織、樓宇自動化、可編程控制器、低壓開關(guān)等;Profibus - PA型采用了OSI模型的物理層和數(shù)據(jù)鏈路層,適用于過程自動化的總線類型。
標(biāo)簽: 多點 網(wǎng)絡(luò) 系統(tǒng)設(shè)計 自動監(jiān)控
上傳時間: 2013-10-09
上傳用戶:fac1003
We all know the benefits of using FieldProgrammable Gate Arrays (FPGAs): no NRE, nominimum order quantities, and faster time-tomarket.In an ideal world, designs would never needto be changed BEcause of design errors, but we allknow that sometimes this is necessary.
上傳時間: 2013-11-04
上傳用戶:leixinzhuo
在研究傳統(tǒng)家用燃?xì)鈭缶鞯幕A(chǔ)上,以ZigBee協(xié)議為平臺,構(gòu)建mesh網(wǎng)狀網(wǎng)絡(luò)實現(xiàn)網(wǎng)絡(luò)化的智能語音報警系統(tǒng)。由于傳感器本身的溫度和實際環(huán)境溫度的影響,傳感器標(biāo)定后采用軟件補償方法。為了減少系統(tǒng)費用,前端節(jié)點采用半功能節(jié)點設(shè)備,路由器和協(xié)調(diào)器采用全功能節(jié)點設(shè)備,構(gòu)建mesh網(wǎng)絡(luò)所形成的家庭內(nèi)部報警系統(tǒng),通過通用的電話接口連接到外部的公用電話網(wǎng)絡(luò),啟動語音模塊進行報警。實驗結(jié)果表明,在2.4 GHz頻率下傳輸,有墻等障礙物的情況下,節(jié)點的傳輸距離大約為35 m,能夠滿足家庭需要,且系統(tǒng)工作穩(wěn)定,但在功耗方面仍需進一步改善。 Abstract: On the basis of studying traditional household gas alarm system, this paper proposed the platform for the ZigBee protocol,and constructed mesh network to achieve network-based intelligent voice alarm system. BEcause of the sensor temperature and the actual environment temperature, this system design used software compensation after calibrating sensor. In order to reduce system cost, semi-functional node devices were used as front-end node, however, full-function devices were used as routers and coordinator,constructed alarm system within the family by building mesh network,connected to the external public telephone network through the common telephone interface, started the voice alarm module. The results indicate that nodes transmit about 35m in the distance in case of walls and other obstacles by 2.4GHz frequency transmission, this is able to meet family needs and work steadily, but still needs further improvement in power consumption.
標(biāo)簽: ZigBee 無線智能 家 報警系統(tǒng)
上傳時間: 2013-10-30
上傳用戶:swaylong
同步技術(shù)是跳頻通信系統(tǒng)的關(guān)鍵技術(shù)之一,尤其是在快速跳頻通信系統(tǒng)中,常規(guī)跳頻通信通過同步字頭攜帶相關(guān)碼的方法來實現(xiàn)同步,但對于快跳頻來說,由于是一跳或者多跳傳輸一個調(diào)制符號,難以攜帶相關(guān)碼。對此引入雙跳頻圖案方法,提出了一種適用于快速跳頻通信系統(tǒng)的同步方案。采用短碼攜帶同步信息,克服了快速跳頻難以攜帶相關(guān)碼的困難。分析了同步性能,仿真結(jié)果表明該方案同步時間短、虛警概率低、捕獲概率高,同步性能可靠。 Abstract: Synchronization is one of the key techniques to frequency-hopping communication system, especially in the fast frequency hopping communication system. In conventional frequency hopping communication systems, synchronization can be achieved by synchronization-head which can be used to carry the synchronization information, but for the fast frequency hopping, BEcause modulation symbol is transmitted by per hop or multi-hop, it is difficult to carry the correlation code. For the limitation of fast frequency hopping in carrying correlation code, a fast frequency-hopping synchronization scheme with two hopping patterns is proposed. The synchronization information is carried by short code, which overcomes the difficulty of correlation code transmission in fast frequency-hopping. The performance of the scheme is analyzed, and simulation results show that the scheme has the advantages of shorter synchronization time, lower probability of false alarm, higher probability of capture and more reliable of synchronization.
標(biāo)簽: 快速跳頻 同步技術(shù) 通信系統(tǒng)
上傳時間: 2013-11-23
上傳用戶:mpquest
Abstract: Most hand-held products lack accurate battery-charge monitors ("fuel gauges") BEcause of the misconception that an accurate fuel gauge is difficult to achieve. This article debunks the myths and discusses how to accurately monitor charge at all temperatures, charge and discharge rates, and aging conditions. 無線通信和數(shù)據(jù)在新一代手機和PDA中的融合為再一次的生產(chǎn)力飛躍創(chuàng)造了條件。。隨之而來的將是經(jīng)濟的增長和全新的工作方式,在便攜式計算機領(lǐng)域,PC筆記本曾經(jīng)扮演了類似的開拓者角角。
上傳時間: 2013-10-17
上傳用戶:erkuizhang
Single-Ended and Differential S-Parameters Differential circuits have been important incommunication systems for many years. In the past,differential communication circuits operated at lowfrequencies, where they could be designed andanalyzed using lumped-element models andtechniques. With the frequency of operationincreasing beyond 1GHz, and above 1Gbps fordigital communications, this lumped-elementapproach is no longer valid, BEcause the physicalsize of the circuit approaches the size of awavelength.Distributed models and analysis techniques are nowused instead of lumped-element techniques.Scattering parameters, or S-parameters, have beendeveloped for this purpose [1]. These S-parametersare defined for single-ended networks. S-parameterscan be used to describe differential networks, but astrict definition was not developed until Bockelmanand others addressed this issue [2]. Bockelman’swork also included a study on how to adapt single-ended S-parameters for use with differential circuits[2]. This adaptation, called “mixed-mode S-parameters,” addresses differential and common-mode operation, as well as the conversion betweenthe two modes of operation.This application note will explain the use of single-ended and mixed-mode S-parameters, and the basicconcepts of microwave measurement calibration.
上傳時間: 2014-03-25
上傳用戶:yyyyyyyyyy
Abstract: Most hand-held products lack accurate battery-charge monitors ("fuel gauges") BEcause of the misconception that an accurate fuel gauge is difficult to achieve. This article debunks the myths and discusses how to accurately monitor charge at all temperatures, charge and discharge rates, and aging conditions.
上傳時間: 2014-03-18
上傳用戶:wenwiang
Applying power to a standard logic chip, SRAM, or EPROM, usually results in output pinstracking the applied voltage as it rises. Programmable logic attempts to emulate that behavior,but physics forbids perfect emulation, due to the device programmability. It requires care tospecify the pin behavior, BEcause programmable parts encounter unknown variables – yourdesign and your power environment.
標(biāo)簽: Xilinx XAPP CPLD 440
上傳時間: 2013-11-24
上傳用戶:253189838
Modern electronic systems solve so many difficult problems that they often seem like magic. Nonetheless, these systems all have thesame basic limitation: they need a source of electrical power! Most of the time this is a straightforward challenge for the electronicdesigner, BEcause there are many power-delivery solutions. Yet sometimes a device has no direct power source, and running wiresor replacing batteries is impractical. Even when long-life batteries are usable, they eventually need to be replaced, which requires aservice call.
標(biāo)簽: 能量收集
上傳時間: 2015-01-03
上傳用戶:zukfu
Abstract: How can an interface change a happy face to a sad face? Engineers have happy faces when an interface works properly.Sad faces indicate failure somewhere. BEcause interfaces between microprocessors and ICs are simple—even easy—they are oftenignored until interface failure causes sad faces all around. In this article, we discuss a common SPI error that can be almostimpossible to find in a large system. Links to interface tutorial information are provided for complete information. Noise as a systemissue and ICs to minimize its effects are also described.
上傳時間: 2013-11-18
上傳用戶:zgz317
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