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建筑电气与智能化文献检索

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建筑电气与智能化文献检索

建筑电气与智能化专业培养具备智能室内环境设备系统及建筑公共设施系统的设计、安装调试、运行管理及国民经济各部门所需的特殊环境的研究开发的基础理论知识及能力,能在设计研究院、建筑工程公司、物业管理公司及相关的科研、生产、教学等单位从事工作的高级工程技术人才。电气控制与可编程、建筑制图与识图、电工基础、电子技术基础、应用电机技术、微机原理与接口技术、电气CAD、建筑供配电、智能建筑环境学、建筑设备与自动化、建筑信息设施系统、公共安全技术等。核心知识领域:电路理论与电子技术、电气传动与控制、检测与控制、网络与通信、计算机应 用技术、建筑设备、土木工程基础、建筑智能环境学、建筑电气工程、建筑智能化工程、工程技术基 础、建筑节能技术。扩展资料:建筑电气是在土木工程学科背景下,研究以建筑物为载体的对电能的产生、传输、转换、控制、利用的专业。“建筑智能化”所涉及的相关技术是随着20世纪末智能建筑的兴起而发展的,需要由设备自动控制、通信技术、计算机网络、微电子信息技术等配合交叉实现。"建筑电气工程"是以电能、电气设备和电气技术为手段来创造、维持与改善限定空间和环境的一门科学,它是介于土建和电气两大类学科之间的一门综合学科。经过多年的发展,它已经建立了自己完整的理论和技术体系,发展成为一门独立的学科。

建议选学校从以下几个方面作考察对比,1办学资质,有无政府部门审批的办学许可证。2教学设备,是否齐全,是否真正用来实训。3校园管理,校园门卫安全管理是否严格,学生文明礼貌,校园环境卫生等。4师资力量,考察教师数量,学历层次,实战经验,授课水平等。5教学过程,观察上课秩序,学生听课状态,学生是否在动手操作,操作过程是否规范。6就业安置,考察就业合作单位,就业薪资等就业服务工作。7生活设施,宿舍卫生如何,是否具备热水和空调,食堂价格如何,菜品如何等。就说这么多吧,专业成就梦想,技术助你成功!望采纳,谢谢!

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建筑电气与智能化文献检索的论文2000字

摘要:本文主要介绍了近年来电气自动化技术的发展,以及应用的概况。电气自动化技术尽管已经广泛应用与我国国民生产的各个部门和领域,但它仍需要不断革新,不断发展。关键词:电气自动化;发展;应用一、发展概况伴随着我国的电力电子技术、微电子技术的飞速发展,电气自动化的概念已经走出了工厂,并在交通、农业、建筑、办公场所等方面得到了广泛的应用,电气自动化技术作为从电气工程技术发展出来的并与电子与信息技术紧密结合起来的一门电气工程应用技术学科,历经了近一个世纪的发展,电气自动化技术已走过了从无到有、从发展到成熟的过程。而我国电气自动化的研究工作可以追溯到上世纪的五十年代,可以说研究的时间不短,但是它依旧焕发着生气与活力。下文就来简述一下我国电气自动化的发展历程:(一)全空型的电力电子开关。于上世纪五十年代晶闸管出现了,它标志着运动控制的新纪元。尽管它是第一代电子电力器件,但仍被沿用至今。随后交流变频技术出现后相继有出现了全控制式器件如GTR等。这是电力电子器件的第二代;接下来是IGBT和MGT这一类复合型电力电子器件可以称为第三代器件。最后是功率集成电路,PIC即第四代电力电子器件。(二)由低频向高频方向发展的电路。不断更新的电力电子器件势必要引发变换器电路的换代。当应用于普通晶闸管时,直流传动的变换器主要是整流相互控制,交流变频传动则是交—直—交变频器。当电力电子器件转换到第二代的时候,PWM变换器采用的相应也要多些。因为采用了PWM变换器之后不仅提高了功效,并且能够减少高次谐波对电网的影响,合理解决了电动机在低频区的转矩脉动问题。随着应用的深入,PWM也存在着诸多缺陷,因此也就有了谐振式直流逆变器电路的发展。(三)交流调速控制理论。交流电机磁场定向远离市由德国学者F·Blaschke所提出来的,这一理论的提出为交流传动高性能控制奠定了深刻的理论基础。但他提出的这个思想远不能够达到理论的操控效果。于是事隔14年后于1985年德国鲁德大学的Depenbrock教授又提出了直接转矩控制的思想,紧接着有将它推放到了弱磁调速的范围内。可以说他的这一控制思想新颖,控制结构简单明了,信号处理的物理概念明确,是一种高静动态性能的新型交流调速方法。(四)通用变频器的投入使用。通用变频器:系列化、批量化、占市场量最大的中小功率变频器。先后变频器经历了第一代:普通功能型U/F控制型;第二代:高功能型U/F型;第三代:高动态性能适量控制型。(五)单片机的发展。占主导地位的MCS-51的8位机虽占主导地位,但是它的功能还比较简单,指令集短小,因此就有了适合大批量生产的PIC系列单片机的推广使用,它不仅具有很高的可靠性,而且保密性高。二、电气自动化的应用(一)建筑中的应用。智能化建筑势必要引入电气自动化的成分,随着我国国民经济的飞速发展以及数字电子化科技发展,无疑,高档智能化建筑已经成为了当今建筑界的主流方向。为了达到设备的合理利用,三明的人力的节省就有了建筑设备的自动化控制系统。例如:在建筑物供配电设计中,接地系统没计占有重要的地位,因为它关系到供电系统的可靠性,安全性。IN—S是一个三相四线J/NPE线的接地系统。通常建筑物内设有独立变配电所时进线采用该系统。TN—s系统的特点是,中性线N与保护接地线PE除在变压器中性点共同接地外,两线不再有任何的电气连接。中性线N是带电的,而PE线不带电。该接地系统完全具备安全和可靠的基准电位。只要像TN—C—S接地系统,采取同样的技术措施,TN—S系统可以用作智能建筑物的接地系统。智能建筑应没置电子设备的直流接地,交流工作接地,安全保护接地及普通建筑也应具备的防雷保护接地。智能化建筑内有大量的电子设备与布线系统,如通信自动化系统,火灾报警及消防联动控制系统,楼宇自动化系统,保安监控系统,办公自动化系统,闭路电视系统等,以及他们相应的布线系统。这些电子设备及布线系统一般均属于耐压等级低,防干扰要求高,最怕受到雷击的部分。建立严密,完整的防雷结构。智能建筑多属于一级负荷,应按一级防雷建筑物的保护措施设计,组成具有多层屏蔽的笼形防雷体系。(二)应用于净化空调设备。净化空调系统控制自动监控装置,可设计成单个系统的测量、控制系统,也可设计成数字计算机控制管理系统。对温度的控制。净化空凋系统采用DDC控制。装设在回风管(回风温度近似于洁净室温度)的温度传感器所检测的温度送往DX一9100,与设定点相比较,用比例加积分加微分运算进行控制,输出相应电压信号,控制加热电动调节阀或冷水电动调节阀的动作,控制回风温度保持在18"12—26‘℃之间,使洁净室温度符合GMP要求。对湿度的控制。装设在同风管(回风湿度近似丁洁净室湿度)内的湿度传感器所检测的湿度,送往控制器与设定湿度相比较,用比例加积分运算控制,输出电JK信号,控制蒸汽电动调节阀的动作,控制回风湿度保持在45%65%,使洁净室湿度以满足GMP要求。电气自动化技术尽管已经广泛应用与我国国民生产的各个部门和领域,但它仍需要不断革新,不断发展。Abstract: This paper introduces the recent development of electrical automation technology, and application Although electrical automation technology has been widely used in various sectors of our national production and areas, but it still requires constant innovation, continuous Key words: electrical automation; development; applications I Development Overview Along with China's power electronics technology, the rapid development of microelectronics technology, electrical automation concept has been out of the factory, and in transportation, agriculture, construction, office space and other aspects of a wide range of applications, electrical automation technology as the electrical engineering from the developed and closely with the electronics and information technology to combine an electrical engineering technology disciplines, after nearly a century, electrical automation technology has come a scratch, from development to The electrical automation of research can be traced back to the fifties of the last century can be said of the time a lot, but it still glow with vitality and To describe briefly below to the course of development of electrical automation: (A) all air-based power electronic Thyristor in the fifties of last century there, it marks a new era of motion Although it is the first generation of electronic power devices, but was still in AC variable frequency technology appears then there have appeared a full-control devices, such as GTR and so This is the second generation of power electronic devices; followed this type of IGBT and MGT hybrid power electronic devices can be called third-generation Finally, power integrated circuits, PIC is the fourth generation of power electronic (B) the direction of low frequency to high frequency Constantly updated to power electronic devices will inevitably lead to the replacement converter When applied to a thyristor, the DC transmission between the converter is mainly controlled rectifier, AC variable frequency drive is AC - DC - AC When the power switch to the second generation of electronic devices, when, PWM converters have adopted more After using the PWM converter because not only improve the efficiency and to reduce the high harmonics of the grid and reasonable solution to the motor torque ripple in the low frequency With the application of in-depth, PWM also has many defects, so DC will have a resonant inverter circuit (C) AC speed control AC motor field oriented away from the city by the German scholar F · Blaschke made out, this theory put forward for the AC drive for high performance has laid a profound theoretical However, he proposed this idea is far from control theory to achieve So 14 years later in Germany in 1985 after the University of Depenbrock Professor Rood also proposed the idea of ​​direct torque control, followed by a push it into the field weakening speed It can be said that control thought his novel control structure is simple, clear physical concept of signal processing, static and dynamic properties of a new type of high speed communication (D) Common drive in Universal Converter: serialization and batch, the largest market share of small and medium-power The first generation drive has gone through: common functional U / F control type; second generation: high-functional U / F type; the third generation: amount of controlled high dynamic (E) the development of SCM Dominant MCS-51 8-bit machines, although the dominant, but its function is still relatively simple, short set of instructions, hence suitable for mass production of the PIC MCU promote the use of, it not only has high reliability and high Second, the Electric Automation (A) B Intelligent building automation is bound to bring in electrical components, along with the rapid development of China's national economy and the development of digital electronic technology, no doubt, high-end intelligent building has become the mainstream of today's construction In order to achieve rational use of equipment, manpower saving in Sanming have a building automation control system For example: In the design of buildings for power distribution, grounding system plays an important role not count, because it relates to the power supply system reliability, IN-S is a three-phase four-wire J / NPE line grounding Usually buildings are equipped with separate substation into the line when using the TN-s system is characterized by the neutral and protective earth line PE N addition to the common grounding transformer neutral point, the two lines no longer have any electrical Neutral line N is live, and PE line is not The grounding system is fully equipped with safe and reliable reference As long as the TN-C-S earthing system, adopt the same technical measures, TN-S system can be used as a smart building grounding Intelligent building should not set the DC grounding electronic equipment, exchange of ground, ground and general building security should have the lightning protection Intelligent building, a large number of electronic devices and wiring systems, such as communications automation systems, fire alarm and fire control systems, building automation systems, security monitoring systems, office automation systems, CCTV systems, as well as their corresponding wiring The electronic equipment and cabling system voltage levels are generally lower for high anti-interference, fear by the lightning The establishment of strict and complete the mine Intelligent Building is a multi-load, should be a lightning protection design of buildings to form a multi-layer shielding cage lightning protection (B) applies to clean air conditioning Air conditioning system controls automatic monitoring device can be designed into a single system of measurement, control systems, can also be designed into digital computer-controlled management Temperature Gas purification system using DDC control Installed in return air duct (return air temperature is similar to the clean room temperature) The temperature detected by temperature sensor sent a DX 9100, compared with the set point with proportional plus integral plus derivative control operation, the output corresponding voltage signal, electric control valve controlling the heating or cold water electric control valve movement and control the return air temperature maintained at 18 "12-26 '℃ between the clean room temperature meet GMP of humidity installed in the same duct (return Approximate Jie Ding cleanroom air humidity humidity) sensors detect the humidity within the humidity, sent to the controller and set the humidity compared to the control with proportional plus integral operation, the output JK signals to control the action of steam electric control valve to control back wind and humidity kept at 45% 65%, so the clean room to meet the GMP requirements and Although electrical automation technology has been widely used in various sectors of our national production and areas, but it still requires constant innovation, continuous

随着电气智能化技术的迅速发展,电气工程的地位和作用越来越重要,直接关系到整个工程的质量、工期、投资和预期效果。 电气工程师应对所负责的电气工程质量具有高度负责的责任心,充分应用自己的专业水平深入、细致的搞好电气工程的技术、质量、进度、签证、安全等管理工作。 电气工程师首先要有全面的专业知识,建筑工程的施工包括土建、装修、给排水、暖通、电气安装等。在施工中,若某一专业只考虑本专业或工种的进度,势必影响其他工种施工,同时本专业也很难搞好。在建筑基础施工阶段,建筑电气安装应做好接地装置及接地引线、防雷装置引下线等工作;在建筑主体施工阶段,应做好配管、配线、预留、预埋工作;在建筑装修阶段,应做好电器安装、调试等工作。 一、施工前的准备工作 在工程项目开工前,电气安装技术人员应首先熟悉电气施工图纸,并会同土建施工技术人员共同查对土建施工图与电气施工图,列出哪些部分有交叉施工,根据土建施工进度计划,对有关基础型钢预埋、支吊架预埋和线路保护管预埋等,排出配合交叉施工计划,确定准确配合时间,以防遗漏和发生差错。并在配合施工之前,将各种预埋件制作好,并做好必要的防腐处理,充分做好施工前技术与材料准备工作。 二、施工阶段的质量控制 施工中必须根据已会审后的电气施工图纸和有关技术文件,按照国家现行的电气工程施工及验收规范,地方有关工程建设的法规、文件,经审批的施工组织设计(施工技术方案)进行。施工中若发现图纸问题应及时提出并处理,不允许未经未经同意擅自变更设计。 严格推行规范化操作程序,编制符合规范、工艺标准,具有可操作性的质量控制程序。每道工序未经有关人员在验收表上签字,不得进行下道工序,记录好工作日志,防止监督流于形式。 在施工阶段要严把材料质量关,推行质量控制卡措施,每种材料要有完整的资料(出厂合格证、检测报告、复测报告等)并经过建设单位、监理单位签字才可进场,将不合格材料进入工程的门路堵死;其次要严格控制分部工程的质量关,重点是工序的质量控制。在施工阶段中质量控制要注意细节部分,重点检查和控制。 1、基础施工阶段的质量控制:在基础工程施工时,应及时配合土建做好强、弱电专业的进户电缆穿墙管及止水挡板的预埋、预留工作。这一工作要求电气专业应赶在土建做墙体防水处理之前完成,避免电气施工破坏防水层造成墙体今后渗漏;对需要预埋的铁件、吊卡、木砖、吊杆基础螺栓及配电柜基础型钢等预埋件,电气施工人员应配合土建提前做好准备,土建施工到位及时埋入,不得遗漏。电气施工安装中,管理人员只有努力提高自身的素质和专业能力,才能把好质量关。 2、主体施工阶段的质量控制:首先必须分清工程中的重点环节。在电气工程质量监控中,确定配电装置、电力电缆、配电箱三个重点设备交接协调环节,明确关系,制定措施,根据规范进行超前监控,达到对工程质量的预控。其次,必须在监控好重点环节的基础上以点带面,促动整个系统工程的质量控制。电气工程要与土建工程紧密配合,根据土建浇注混凝土的进度要求及流水作业的顺序,逐层逐段的做好电管铺设工作,这是整个电气安装工程的关键工作,做的不好不仅影响土建施工进度与质量,而且也影响整个电气安装工程后续工序的质量与进度。浇注混凝土时,电工应留人看守,以防振捣混凝土时损坏配管或使得开关盒移位。遇有管路损坏时,应及时修复。 3、装修阶段的质量控制:在砌筑隔墙之前应与土建工长和放线员将水平线及隔墙线核实一遍,因为将按此线确定管路预埋位置及各种灯具、开关插座的位置、标高。抹灰之前,电气施工人员应按内墙上弹出的水平线和墙面线,将所有电气工程中的预留孔洞按设计和规范要求核实一遍,符合要求后将箱盒稳定好,将全部暗配管路也检查一遍,然后扫通管路,穿好带线,堵好管盒。抹灰时配合土建做好配电箱的贴门脸及箱盒的收口,箱盒处抹灰收口应光滑平整。 三、电气工程施工的安全管理 要坚持“安全第一,预防为主”的方针,编制针对本工程的安全技术措施及安全组织措施,对施工人员进行安全技术交底,并设专职持证上岗的安全员。 1、建立施工组织设计和安全用电技术措施的编制、审批制度,并建立相应的技术档案。 2、建立技术交底制度,向专业电工、各类用电人员介绍施工组织设计和安全用电技术措施的总体意图、技术内容和注意事项,并在技术交底文字资料上履行签字手续,注明交底日期。 3、建立安全教育和培训制度,定期对专业电工及用电人员进行用电安全教育和培训,凡上岗人员必须持有劳动部门核发的上岗证书,严禁无证上岗。 电气工程中应把“质量第一、安全第一”放在首位,应根据工程的自身特点,对施工中的每一个环节都要实施有效的动态控制,做好技术交底,认真管理好从材料采购、施工过程到工程验收的全过程,并且建立良好的质量监督体系,提高电气工程的工程质量。

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建筑电气与智能化文献

简单理解就是电气智能控制,如楼宇对讲、远程抄表、监控、周界报警。。。。。。具体的可以去筑龙网上看。

建筑电气与智能化专业专业概况与建设

建筑电气工程就是以电能、电气设备和电气技术为手段来创造、维持与改善限定空间和环境的一门科学,它是介于土建和电气两大类学科之间的一门综合学科。经过多年的发展,它已经建立了自己完整的理论和技术体系,发展成为一门独立的学科。中国电工技术学会下设工业与建筑电气应用专业委员会,其出版刊物为《电气工程应用》。中国建筑学会下设建筑电气分会,其出版刊物《建筑电气》。教育部2000年新颁布的高等职业教育专业目录中已把建筑电气工程列为新的专业化方向。建筑电气工程的最终目标是将各种硬件与软件资源优化组合,成为一个能满足用户能需要的完整体系,它将建筑物中用于楼宇自控,综合布线,计算机系统的各种相关网络中所有分离的设备的及其功能信息有机地组合成一个既关联又统一协调的整体。未来的建筑的发展。如果我们将“人(居住者,与之有关的外部人员)——机(建筑物,各种设施及设备)——环境(自然环境,人工环境)”作为一个整体来看,那么应当是“人性化的设计——智能化的设备——生态化的环境”三者的空前融合和相辅成,而不是互相制约,这是一个大系统工程。

你去知节网上找些,很多的,也很专业的!

建筑电气与智能化英文文献

Building Electric Technology Intelligent Building Technology

摘要:本文主要介绍了近年来电气自动化技术的发展,以及应用的概况。电气自动化技术尽管已经广泛应用与我国国民生产的各个部门和领域,但它仍需要不断革新,不断发展。关键词:电气自动化;发展;应用一、发展概况伴随着我国的电力电子技术、微电子技术的飞速发展,电气自动化的概念已经走出了工厂,并在交通、农业、建筑、办公场所等方面得到了广泛的应用,电气自动化技术作为从电气工程技术发展出来的并与电子与信息技术紧密结合起来的一门电气工程应用技术学科,历经了近一个世纪的发展,电气自动化技术已走过了从无到有、从发展到成熟的过程。而我国电气自动化的研究工作可以追溯到上世纪的五十年代,可以说研究的时间不短,但是它依旧焕发着生气与活力。下文就来简述一下我国电气自动化的发展历程:(一)全空型的电力电子开关。于上世纪五十年代晶闸管出现了,它标志着运动控制的新纪元。尽管它是第一代电子电力器件,但仍被沿用至今。随后交流变频技术出现后相继有出现了全控制式器件如GTR等。这是电力电子器件的第二代;接下来是IGBT和MGT这一类复合型电力电子器件可以称为第三代器件。最后是功率集成电路,PIC即第四代电力电子器件。(二)由低频向高频方向发展的电路。不断更新的电力电子器件势必要引发变换器电路的换代。当应用于普通晶闸管时,直流传动的变换器主要是整流相互控制,交流变频传动则是交—直—交变频器。当电力电子器件转换到第二代的时候,PWM变换器采用的相应也要多些。因为采用了PWM变换器之后不仅提高了功效,并且能够减少高次谐波对电网的影响,合理解决了电动机在低频区的转矩脉动问题。随着应用的深入,PWM也存在着诸多缺陷,因此也就有了谐振式直流逆变器电路的发展。(三)交流调速控制理论。交流电机磁场定向远离市由德国学者F·Blaschke所提出来的,这一理论的提出为交流传动高性能控制奠定了深刻的理论基础。但他提出的这个思想远不能够达到理论的操控效果。于是事隔14年后于1985年德国鲁德大学的Depenbrock教授又提出了直接转矩控制的思想,紧接着有将它推放到了弱磁调速的范围内。可以说他的这一控制思想新颖,控制结构简单明了,信号处理的物理概念明确,是一种高静动态性能的新型交流调速方法。(四)通用变频器的投入使用。通用变频器:系列化、批量化、占市场量最大的中小功率变频器。先后变频器经历了第一代:普通功能型U/F控制型;第二代:高功能型U/F型;第三代:高动态性能适量控制型。(五)单片机的发展。占主导地位的MCS-51的8位机虽占主导地位,但是它的功能还比较简单,指令集短小,因此就有了适合大批量生产的PIC系列单片机的推广使用,它不仅具有很高的可靠性,而且保密性高。二、电气自动化的应用(一)建筑中的应用。智能化建筑势必要引入电气自动化的成分,随着我国国民经济的飞速发展以及数字电子化科技发展,无疑,高档智能化建筑已经成为了当今建筑界的主流方向。为了达到设备的合理利用,三明的人力的节省就有了建筑设备的自动化控制系统。例如:在建筑物供配电设计中,接地系统没计占有重要的地位,因为它关系到供电系统的可靠性,安全性。IN—S是一个三相四线J/NPE线的接地系统。通常建筑物内设有独立变配电所时进线采用该系统。TN—s系统的特点是,中性线N与保护接地线PE除在变压器中性点共同接地外,两线不再有任何的电气连接。中性线N是带电的,而PE线不带电。该接地系统完全具备安全和可靠的基准电位。只要像TN—C—S接地系统,采取同样的技术措施,TN—S系统可以用作智能建筑物的接地系统。智能建筑应没置电子设备的直流接地,交流工作接地,安全保护接地及普通建筑也应具备的防雷保护接地。智能化建筑内有大量的电子设备与布线系统,如通信自动化系统,火灾报警及消防联动控制系统,楼宇自动化系统,保安监控系统,办公自动化系统,闭路电视系统等,以及他们相应的布线系统。这些电子设备及布线系统一般均属于耐压等级低,防干扰要求高,最怕受到雷击的部分。建立严密,完整的防雷结构。智能建筑多属于一级负荷,应按一级防雷建筑物的保护措施设计,组成具有多层屏蔽的笼形防雷体系。(二)应用于净化空调设备。净化空调系统控制自动监控装置,可设计成单个系统的测量、控制系统,也可设计成数字计算机控制管理系统。对温度的控制。净化空凋系统采用DDC控制。装设在回风管(回风温度近似于洁净室温度)的温度传感器所检测的温度送往DX一9100,与设定点相比较,用比例加积分加微分运算进行控制,输出相应电压信号,控制加热电动调节阀或冷水电动调节阀的动作,控制回风温度保持在18"12—26‘℃之间,使洁净室温度符合GMP要求。对湿度的控制。装设在同风管(回风湿度近似丁洁净室湿度)内的湿度传感器所检测的湿度,送往控制器与设定湿度相比较,用比例加积分运算控制,输出电JK信号,控制蒸汽电动调节阀的动作,控制回风湿度保持在45%65%,使洁净室湿度以满足GMP要求。电气自动化技术尽管已经广泛应用与我国国民生产的各个部门和领域,但它仍需要不断革新,不断发展。Abstract: This paper introduces the recent development of electrical automation technology, and application Although electrical automation technology has been widely used in various sectors of our national production and areas, but it still requires constant innovation, continuous Key words: electrical automation; development; applications I Development Overview Along with China's power electronics technology, the rapid development of microelectronics technology, electrical automation concept has been out of the factory, and in transportation, agriculture, construction, office space and other aspects of a wide range of applications, electrical automation technology as the electrical engineering from the developed and closely with the electronics and information technology to combine an electrical engineering technology disciplines, after nearly a century, electrical automation technology has come a scratch, from development to The electrical automation of research can be traced back to the fifties of the last century can be said of the time a lot, but it still glow with vitality and To describe briefly below to the course of development of electrical automation: (A) all air-based power electronic Thyristor in the fifties of last century there, it marks a new era of motion Although it is the first generation of electronic power devices, but was still in AC variable frequency technology appears then there have appeared a full-control devices, such as GTR and so This is the second generation of power electronic devices; followed this type of IGBT and MGT hybrid power electronic devices can be called third-generation Finally, power integrated circuits, PIC is the fourth generation of power electronic (B) the direction of low frequency to high frequency Constantly updated to power electronic devices will inevitably lead to the replacement converter When applied to a thyristor, the DC transmission between the converter is mainly controlled rectifier, AC variable frequency drive is AC - DC - AC When the power switch to the second generation of electronic devices, when, PWM converters have adopted more After using the PWM converter because not only improve the efficiency and to reduce the high harmonics of the grid and reasonable solution to the motor torque ripple in the low frequency With the application of in-depth, PWM also has many defects, so DC will have a resonant inverter circuit (C) AC speed control AC motor field oriented away from the city by the German scholar F · Blaschke made out, this theory put forward for the AC drive for high performance has laid a profound theoretical However, he proposed this idea is far from control theory to achieve So 14 years later in Germany in 1985 after the University of Depenbrock Professor Rood also proposed the idea of ​​direct torque control, followed by a push it into the field weakening speed It can be said that control thought his novel control structure is simple, clear physical concept of signal processing, static and dynamic properties of a new type of high speed communication (D) Common drive in Universal Converter: serialization and batch, the largest market share of small and medium-power The first generation drive has gone through: common functional U / F control type; second generation: high-functional U / F type; the third generation: amount of controlled high dynamic (E) the development of SCM Dominant MCS-51 8-bit machines, although the dominant, but its function is still relatively simple, short set of instructions, hence suitable for mass production of the PIC MCU promote the use of, it not only has high reliability and high Second, the Electric Automation (A) B Intelligent building automation is bound to bring in electrical components, along with the rapid development of China's national economy and the development of digital electronic technology, no doubt, high-end intelligent building has become the mainstream of today's construction In order to achieve rational use of equipment, manpower saving in Sanming have a building automation control system For example: In the design of buildings for power distribution, grounding system plays an important role not count, because it relates to the power supply system reliability, IN-S is a three-phase four-wire J / NPE line grounding Usually buildings are equipped with separate substation into the line when using the TN-s system is characterized by the neutral and protective earth line PE N addition to the common grounding transformer neutral point, the two lines no longer have any electrical Neutral line N is live, and PE line is not The grounding system is fully equipped with safe and reliable reference As long as the TN-C-S earthing system, adopt the same technical measures, TN-S system can be used as a smart building grounding Intelligent building should not set the DC grounding electronic equipment, exchange of ground, ground and general building security should have the lightning protection Intelligent building, a large number of electronic devices and wiring systems, such as communications automation systems, fire alarm and fire control systems, building automation systems, security monitoring systems, office automation systems, CCTV systems, as well as their corresponding wiring The electronic equipment and cabling system voltage levels are generally lower for high anti-interference, fear by the lightning The establishment of strict and complete the mine Intelligent Building is a multi-load, should be a lightning protection design of buildings to form a multi-layer shielding cage lightning protection (B) applies to clean air conditioning Air conditioning system controls automatic monitoring device can be designed into a single system of measurement, control systems, can also be designed into digital computer-controlled management Temperature Gas purification system using DDC control Installed in return air duct (return air temperature is similar to the clean room temperature) The temperature detected by temperature sensor sent a DX 9100, compared with the set point with proportional plus integral plus derivative control operation, the output corresponding voltage signal, electric control valve controlling the heating or cold water electric control valve movement and control the return air temperature maintained at 18 "12-26 '℃ between the clean room temperature meet GMP of humidity installed in the same duct (return Approximate Jie Ding cleanroom air humidity humidity) sensors detect the humidity within the humidity, sent to the controller and set the humidity compared to the control with proportional plus integral operation, the output JK signals to control the action of steam electric control valve to control back wind and humidity kept at 45% 65%, so the clean room to meet the GMP requirements and Although electrical automation technology has been widely used in various sectors of our national production and areas, but it still requires constant innovation, continuous

建筑电气与智能化参考文献

建筑电气与智能化专业,培养具备智能室内环境设备系统及建筑公共设施系统的设计、安装调试、运行管理及国民经济各部门所需的特殊环境的研究开发的基础理论知识及能力,能在设计研究院、建筑工程公司、物业管理公司及相关的科研、生产、教学等单位从事工作的高级工程技术人才。主要课程有:电气控制与可编程、建筑制图与识图、电工基础、电子技术基础、应用电机技术、微机原理与接口技术、电气CAD、建筑供配电、智能建筑环境学、建筑设备与自动化、建筑信息设施系统、公共安全技术等。

不是问题的,解决了发给你吧

建筑电气与智能化专业培养具备智能室内环境设备系统及建筑公共设施系统的设计、安装调试、运行管理及国民经济各部门所需的特殊环境的研究开发的基础理论知识及能力,能在设计研究院、建筑工程公司、物业管理公司及相关的科研、生产、教学等单位从事工作的高级工程技术人才。电气控制与可编程、建筑制图与识图、电工基础、电子技术基础、应用电机技术、微机原理与接口技术、电气CAD、建筑供配电、智能建筑环境学、建筑设备与自动化、建筑信息设施系统、公共安全技术等。核心知识领域:电路理论与电子技术、电气传动与控制、检测与控制、网络与通信、计算机应 用技术、建筑设备、土木工程基础、建筑智能环境学、建筑电气工程、建筑智能化工程、工程技术基 础、建筑节能技术。扩展资料:建筑电气是在土木工程学科背景下,研究以建筑物为载体的对电能的产生、传输、转换、控制、利用的专业。“建筑智能化”所涉及的相关技术是随着20世纪末智能建筑的兴起而发展的,需要由设备自动控制、通信技术、计算机网络、微电子信息技术等配合交叉实现。"建筑电气工程"是以电能、电气设备和电气技术为手段来创造、维持与改善限定空间和环境的一门科学,它是介于土建和电气两大类学科之间的一门综合学科。经过多年的发展,它已经建立了自己完整的理论和技术体系,发展成为一门独立的学科。

可以的呀,怎么给你呢这个我刚好有的哦整套的

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