{"id":85741,"date":"2020-06-19T01:42:40","date_gmt":"2020-06-18T23:42:40","guid":{"rendered":"https:\/\/prohoster.info\/blog\/administrirovanie\/peredacha-dannyh-na-rasstoyanie-do-20-km-po-obychnym-provodam-legko-esli-eto-shdsl"},"modified":"2020-06-19T01:42:40","modified_gmt":"2020-06-18T23:42:40","slug":"peredacha-dannyh-na-rasstoyanie-do-20-km-po-obychnym-provodam-legko-esli-eto-shdsl","status":"publish","type":"post","link":"https:\/\/prohoster.info\/en\/blog\/administrirovanie\/peredacha-dannyh-na-rasstoyanie-do-20-km-po-obychnym-provodam-legko-esli-eto-shdsl","title":{"rendered":"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it's SHDSL\u2026","gt_translate_keys":[{"key":"rendered","format":"text"}]},"content":{"rendered":"<p>Despite the widespread adoption of Ethernet networks, DSL-based communication technologies remain relevant to this day. DSL can still be found in last-mile networks for connecting subscriber equipment to Internet service providers, and recently the technology is increasingly used in local networks, for example, in industrial applications where DSL complements Ethernet or field networks based on RS-232\/422\/485. Such industrial solutions are actively applied in developed European and Asian countries.<noindex><a rel=\"nofollow\" name=\"habracut\"><\/a><\/noindex><\/p>\n<p>DSL represents a family of standards originally designed for transmitting digital data over telephone communication lines. Historically, it became the first broadband access technology to the Internet, replacing Dial-Up and ISDN. The variety of existing DSL standards today is due to many companies, starting from the 1980s, striving to develop and promote their own technology in the market.<\/p>\n<p>All these developments can be divided into two major categories \u2013 asymmetric (ADSL) and symmetric (SDSL) technologies. Asymmetric technologies are those where the speed of the incoming connection differs from the outgoing traffic speed. Symmetric technologies mean that the speeds for receiving and transmitting are equal.<\/p>\n<p>The most well-known and widespread asymmetric standards are, in fact, ADSL (in its latest version \u2013 ADSL2+) and VDSL (VDSL2), while symmetric standards include HDSL (an outdated profile) and SHDSL. They differ from each other by operating on different frequencies, utilizing different encoding and modulation methods on the physical communication line. Error correction methods also vary, which provides different levels of noise immunity. As a result, each technology has its own limits in speed and distance for data transmission, depending on the type and quality of the conductor.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/595d2a4957280205945269a5386404cd.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Limit parameters of various DSL standards <\/i><\/p>\n<p>In any DSL technology, data transfer speed decreases as the length of the conductor increases. At extreme distances, speeds of several hundred kilobits can be achieved, but at distances of 200-300 meters, the maximum possible speed is available. <\/p>\n<p>Among all technologies, SHDSL has a significant advantage that allows it to be used in industrial applications \u2013 high resistance to interference and the ability to use any type of conductor for data transmission. Asymmetric standards do not offer this, and the quality of communication heavily depends on the quality of the line used for data transfer. In particular, twisted telephone cables are recommended. In this case, using optical cables is a more reliable solution than ADSL and VDSL.<\/p>\n<p>Any pair of insulated conductors is suitable for SHDSL \u2013 copper, aluminum, steel, etc. Old electrical wiring, old telephone lines, barbed wire fences, and so forth can serve as the transmission medium.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/1af1091e3f0e24a968fd94e1c125e83c.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>The dependence of SHDSL data transfer speed on distance and type of conductor<\/i><\/p>\n<p>From the graph showing the dependence of data transfer speed on distance and type of conductor for SHDSL, it can be seen that conductors with a larger cross-section allow for transmitting information over greater distances. Thanks to this technology, it is possible to establish communication over distances of up to 20 km with a maximum speed of 15.3 Mb\/s for a 2-wire cable or 30 Mb for a 4-wire cable. In real applications, the transfer speed can be manually adjusted, which is necessary in conditions of strong electromagnetic interference or poor line quality. In this case, to increase the transmission distance, it is necessary to reduce the speed of the SHDSL devices. Free software tools, such as <noindex><a rel=\"nofollow\" href=\"https:\/\/www.phoenixcontact.com\/online\/portal\/ru\/pxc\/product_detail_page\/!ut\/p\/z1\/3VfdbtowFH4VdsGlsRM7P0zaBUtRgQ5E-WlJbiLHcTp3hLAQoOVZ9hjb3bRn4JHmBKqVrU2koVw0kRXHjs93vnPsz7KhA2fQWdCNuKOJiBZ0Ltu2o7umemV1LonSN1u4ja6bWmdo4anV6-rwBjrQSagHbSX9mgsvpvEjtON1vE47lsKHtmoglaBm2o6CoWVdQXsIkAmQAhCW7wxDJHMO7f23_a_99_2P_c8aqE2sWns2aQ8u2qOaipBSa086QB3LP0-It3n88MiATj79gz165WmhYnsnb0jGIBuQ42Icr93R1B3OrNEU2pKQ8apHmarbjeBbOF1EcSjnZ5zlmKVJNrQg0JDKAQ68ABBqYuAFFAOfcIXqvuIx04QdVODhEp3poQBeLRcelwpvnpucXu5iucGp3sT9169OCzosWiT8IYGzVEp1tOVeHX2OQl7A8ZocWP2jxD8ijTnjYsNjiZTSjyN_zZILnlAxX3UTHnZPJfu3hJd-EEY-P1pHK5HuFSdYsj1JqR_6GPvygt4lypwu7tb0LosoPya9gjFpFYzJqF5MegX1pFdQT3oF9aRXUE_9CuqpX8G116_gHtFGFYxJfYsxyY51LKC9fGAgYkBIFn5G6L30_uHJuTwuCy9sbFnYQA05tHH05x7GussUrODIHFKxqKOj4aqO5mKVZIbye8TDKOFuahZHc_eEcx0xhRGEZdvXkAYI0xmghhIAAyk08DVumk2jYHKujNcvDB4hmsekryam8sKAsbwwIOQDhnyie1TBBKsF8BYpF14vFX5cLrxabnJUrVT47rnsc6-aPYLP0U18qpvlf-hmGYYmTguYztA9sXub7XYShJZnHqtHvJtwb_esmAgfbQ7FHQy0zfPyBgx2QXgLZLC7j4MXqk-td78BGy9hmg!!\/p0\/IZ7_82KCHG41M8A3E0Q95HPC3UCJ67=CZ6_82KCHG41M8A3E0Q95HPC3UCJI6=LA0=EdownloadId!2539683=action!downloadFile==\/#Z7_82KCHG41M8A3E0Q95HPC3UCJ67\">the SHDSL calculator from Phoenix Contact<\/a><\/noindex>. <\/p>\n<h3>What gives SHDSL its high resistance to interference?<\/h3>\n<p>\nThe principle of operation of the SHDSL transceiver can be represented in a block diagram, which highlights a specific and independent (invariant) part from the application's perspective. The independent part consists of functional blocks PMD (Physical Medium Dependent) and PMS-TC (Physical Medium-Specific TC Layer), while the specific part includes the TPS-TC (Transmission Protocol-Specific TC Layer) and user data interfaces. <\/p>\n<p>The physical communication line between transceivers (STU) can exist as a single twisted pair or multiple twisted pairs of cables. In the case of multiple pairs of cables, the STU contains several independent PMD blocks connected to a single PMS-TC.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/c567db51783bca082459a61b9a216274.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Functional model of the SHDSL transceiver (STU)<\/i><\/p>\n<p>The TPS-TC module depends on the application in which the device is used (Ethernet, RS-232\/422\/485, etc.). Its task is to convert user data into SHDSL format, performing multiplexing\/demultiplexing and timing adjustment of multiple user data channels.<\/p>\n<p>At the PMS-TC level, SHDSL frames are formed and synchronized, as well as scrambling and descrambling.<\/p>\n<p>The PMD module performs the functions of encoding\/decoding information, modulation\/demodulation, echo cancellation, parameter matching on the communication line, and establishing connections between transceivers. It is at the PMD level that the main operations ensuring high interference resistance of SHDSL are carried out, including TCPAM encoding (Trellis coding with pulse amplitude modulation), a joint coding and modulation mechanism that improves the spectral efficiency of the signal compared to separate methods. The principle of operation of the PMD module can also be represented in the form of a functional diagram.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/4e13986a9bfe9541f49b886d6b27499d.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Block diagram of the PMD module<\/i><\/p>\n<p>At the core of TC-PAM is the use of a convolutional encoder that generates a redundant bit sequence on the SHDSL transmitter side. During each operational clock cycle, each bit entering the encoder corresponds to a double bit (dibit) at the output. Thus, with relatively low redundancy, the resilience of transmission against interference is increased. The use of Trellis modulation allows reducing the bandwidth used for data transmission and simplifies the hardware while maintaining the same signal-to-noise ratio.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/91c1c89e9e011dd3a080632c2c906c81.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Operating Principle of the Trellis Encoder (TC-PAM 16)<\/i><\/p>\n<p>The double bit is formed as a result of a logical operation of addition modulo 2 (exclusive 'or') based on the input bit x1(tn) and the bits x1(tn-1), x1(tn-2), etc. (there can be up to 20 of them), which were fed into the encoder earlier and remain stored in memory registers. In the next clock cycle of the encoder tn+1, a shift of bits in the memory cells will occur to perform the logical operation: the bit x1(tn) will move to memory, shifting the entire stored sequence of bits.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/e449284b9481227acc061043047ca707.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Algorithm of the Convolutional Encoder<\/i><\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/0c4d4edc46001efd7cdc5b51bf4939b0.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Truth Tables for Addition Modulo 2<\/i><\/p>\n<p>For clarity, it is convenient to use the state diagram of the convolutional encoder, which shows the state of the encoder at moments tn, tn+1, etc., depending on the input data. In this context, the state of the encoder refers to the pair of values of the input bit x1(tn) and the bit in the first memory cell x1(tn-1). To construct the diagram, a graph can be used where the vertices represent the possible states of the encoder, and the transitions from one state to another are indicated by the corresponding input bits x1(tn) and output dibits $inline$y &#8320;y &#8321;(t &#8320;)$inline$.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/8e01a39fece83662d076669bf8c77b11.png\" style=\"display:block;margin: 0 auto;\" \/> <img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/643572f5d0ac164647d2e217c34dbb70.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>State Diagram and Transition Graph of the Convolutional Encoder Transmitter<\/i><\/p>\n<p>In the transmitter, based on the received four bits (two output bits of the encoder and two data bits), a symbol is formed, each of which corresponds to a specific amplitude of the modulating signal of the analog-pulse modulator. <\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/c34bf16aa823477cc737a995bbabc034.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>State of the 16-bit APM Depending on the Value of the Four-bit Symbol<\/i><\/p>\n<p>On the signal receiver side, the reverse process occurs \u2013 demodulation and extraction of the required sequence of input bits from the redundant code (double bits y0y1(tn)) of the encoder x1(tn). This operation is performed by the Viterbi decoder.<\/p>\n<p>The decoder algorithm is based on calculating the error metric for all possible assumed states of the encoder. The error metric refers to the difference between the received bits and the assumed bits for each possible path. If there are no errors upon reception, the error metric of the true path will be 0, because there is no bit mismatch. For false paths, the metric will differ from zero, continually increase, and after some time, the decoder will stop calculating the erroneous path, leaving only the true one.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/502605db8f45931a714b10096dd9bf20.png\" style=\"display:block;margin: 0 auto;\" \/> <img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/bacad5ebbd0123972ea17c2625da6961.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>State diagram of the encoder computed by the receiver's Viterbi decoder<\/i><\/p>\n<p>But how does this algorithm ensure noise immunity? If we assume that the receiver received data with an error, the decoder will continue calculating two paths with an error metric of 1. The path with a metric of 0 will no longer exist. However, the algorithm will determine which path is true later based on the following received double bits.<\/p>\n<p>When a second error occurs, there will be several paths with a metric of 2, but the correct path will be identified later based on the maximum likelihood method (i.e., the minimum metric).<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/930eab928e06dd5c784a64591e45c061.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>State diagram of the encoder computed by the Viterbi decoder upon receiving erroneous data <\/i><\/p>\n<p>In the example described above, a 16-bit system algorithm (TC-PAM16) was considered, providing the transmission of three bits of useful information and an additional bit for error protection in one symbol. In TC-PAM16, data transmission speeds range from 192 to 3840 kbit\/s. When increasing the bit depth to 128 (modern systems operate with TC-PAM128), six bits of useful information are transmitted in each symbol, with maximum achievable speeds ranging from 5696 kbit\/s to 15.3 Mb\/s.<\/p>\n<p>The use of pulse amplitude modulation (PAM) connects SHDSL with a number of popular Ethernet standards, such as Gigabit 1000BASE-T (PAM-5), 10-Gigabit 10GBASE-T (PAM-16), or the promising 2020 industrial single-pair Ethernet 10BASE-T1L (PAM-3).<\/p>\n<h3>SHDSL in Ethernet networks<\/h3>\n<p>\nManaged and unmanaged SHDSL modems are distinguished, but this classification has little in common with the familiar division into managed and unmanaged devices, such as those used for Ethernet switches. The difference lies in the means of configuration and monitoring. Managed modems are set up via a web interface and can be diagnosed through SNMP, while unmanaged ones require additional software through a console port (for Phoenix Contact, this is the free PSI-CONF program and mini-USB interface). Unlike switches, unmanaged modems can operate in a ring topology network.<\/p>\n<p>Otherwise, managed and unmanaged modems are absolutely identical, including functionality and the ability to work on a Plug &amp; Play basis, meaning no prior configuration is needed.<\/p>\n<p>Additionally, modems may be tasked with surge protection functions with diagnostic capabilities. SHDSL networks can form very long segments, and conductors may run in areas where surge events can occur (induced voltage differences caused by lightning strikes or short circuits in nearby cable lines). Induced voltage can lead to discharge currents reaching kiloamperes. Therefore, to protect equipment from such phenomena, modems are equipped with surge protective devices in the form of removable boards, which can be replaced if necessary. The SHDSL line is connected to the terminal block of this board.<\/p>\n<h3>Topologies<\/h3>\n<p>\nWith SHDSL, it is possible to build Ethernet networks with any topology: point-to-point, line, star, and ring. Depending on the type of modem, both 2-wire and 4-wire communication lines can be used for connections.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/2a1bea9e3b98c41adfb6ccea237eaf5a.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Ethernet network topologies based on SHDSL<\/i><\/p>\n<p>Distributed systems with a combined topology can also be built. Each segment of the SHDSL network can consist of up to 50 modems, and given the physical capabilities of the technology (distance between modems up to 20 km), the length of a segment can reach 1000 km. <\/p>\n<p>If a managed modem is installed in the head of each such segment, the integrity of the segment can be diagnosed via SNMP. In addition, both managed and unmanaged modems support VLAN technology, which allows the network to be divided into logical subnets. Moreover, the devices are capable of working with data transfer protocols used in modern automation systems (Profinet, Ethernet\/IP, Modbus TCP, etc.). <\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/6ee7348d35e5f3566b15edc7d54c2fed.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Redundancy of communication channels using SHDSL<\/i><\/p>\n<p>SHDSL is used to create backup communication channels in Ethernet networks, most often optical.<\/p>\n<h3>SHDSL and serial interface<\/h3>\n<p>\nSHDSL modems with a serial interface allow overcoming the limitations of distance, topology, and conductor quality that exist in traditional wired systems based on asynchronous transmitters (UART): RS-232 \u2014 15 m, RS-422 and RS-485 \u2014 1200 m.<\/p>\n<p>There are modems with serial interfaces (RS-232\/422\/485) for both universal applications and specialized ones (for example, for Profibus). All such devices fall into the category of 'unmanaged' devices, so they are configured and diagnosed using specialized software. <\/p>\n<h3>Topologies<\/h3>\n<p>\nIn networks with a serial interface, SHDSL allows constructing networks with point-to-point, line, and star topologies. In a linear topology, it's possible to combine up to 255 nodes into one network (30 for Profibus). <\/p>\n<p>In systems built using only devices with the RS-485 interface, there are no restrictions on the data transfer protocols used, but line and star topologies are atypical for RS-232 and RS-422. Therefore, the operation of end devices in an SHDSL network with such topologies is only possible in half-duplex mode. Simultaneously, in systems with RS-232 and RS-422, device addressing at the protocol level must be ensured, which is not typical for interfaces usually used in point-to-point networks.<\/p>\n<p>When connecting devices with different types of interfaces through SHDSL, it's necessary to take into account the lack of a unified mechanism for establishing a connection (handshake) between devices. However, organizing communication in this case is still possible\u2014this requires fulfilling the following conditions:<\/p>\n<ul>\n<li>The coordination of communication and data transmission management must be performed at the level of a unified data transmission protocol;<\/li>\n<li>all end devices should operate in half-duplex mode, which must also be supported by the information protocol.<\/li>\n<\/ul>\n<p>\nThe most commonly used protocol for asynchronous interfaces, Modbus RTU, allows for overcoming all the described limitations and building a unified system with various types of interfaces.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/04796537365d2632fa71348deeaac32c.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Network topologies with a serial interface based on SHDSL<\/i><\/p>\n<p>When using two-wire RS-485 on equipment <noindex><a rel=\"nofollow\" href=\"http:\/\/www.phoenixcontact.ru\">Phoenix Contact<\/a><\/noindex> more complex structures can be built by connecting modems via a single bus on a DIN rail. On this same bus, a power supply can be installed (in this case, all devices receive power through the bus) and optical converters of the PSI-MOS series can be used to create a combined network. An important condition for the operation of such a system is that all transceivers must operate at the same speed.<\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/144b1eadd9d8866cb61ba51d0521b6e0.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Additional capabilities of SHDSL in the RS-485 network<\/i><\/p>\n<h3>Application examples<\/h3>\n<p>\nSHDSL technology is actively used in urban utilities in Germany. Over 50 companies servicing municipal systems utilize old copper wires to connect distributed facilities across the city into a single network. SHDSL is primarily used for management and accounting systems in water, gas, and energy supply. Cities such as Ulm, Magdeburg, Ingolstadt, Bielefeld, Frankfurt (Oder), and many others are included.<img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/7262900dd9448dfa896d27dca45a3a96.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nThe largest system based on SHDSL was created in the city of L\u00fcbeck. The system has a combined structure based on optical Ethernet and SHDSL, integrating 120 remote facilities and utilizing over 50 modems. <noindex><a rel=\"nofollow\" href=\"http:\/\/www.phoenixcontact.ru\">Phoenix Contact<\/a><\/noindex>The entire network is diagnosed via SNMP. The longest segment from the municipality of Kalkhorst to L\u00fcbeck Airport spans 39 km. The reason the client company chose SHDSL was that implementing the project entirely with fiber optics was economically unfeasible given the existence of old copper cables. <\/p>\n<p><img decoding=\"async\" alt=\"Transmitting data over a distance of up to 20 km using regular wires? Easy, if it&#039;s SHDSL\u2026\" src=\"\/wp-content\/uploads\/2020\/06\/a8c6bd958128ea7b097b42dfe49f4c0c.png\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Data transmission through the contact ring<\/i><\/p>\n<p>An interesting example is the transmission of data between moving objects, as seen in wind turbines or large industrial torque machines. Such systems are used for information exchange between controllers located on the rotor and stator of the installations. In this case, data is transmitted using a sliding contact through a contact ring. These examples show that a static contact is not necessary for data transmission via SHDSL.<\/p>\n<h3>Comparison with Other Technologies<\/h3>\n<p><\/p>\n<h4>SHDSL vs GSM<\/h4>\n<p>\nWhen comparing SHDSL to data transmission systems based on GSM (3G\/4G), the advantages of DSL include the absence of operational costs associated with regular payments to the operator for access to the mobile network. With SHDSL, we are not dependent on coverage, the quality and reliability of mobile communication at the industrial site, including resistance to electromagnetic interference. SHDSL eliminates the need for equipment configuration, which speeds up commissioning. Wireless networks are characterized by high data transmission delays and complications in handling multicast traffic (Profinet, Ethernet IP). <\/p>\n<p>The information security of SHDSL is a significant advantage due to the lack of need to transmit data over the Internet and the requirement for VPN configurations.<\/p>\n<h4>SHDSL vs Wi-Fi<\/h4>\n<p>\nMuch of what has been said about GSM can also be applied to industrial Wi-Fi. The disadvantages of Wi-Fi include low noise immunity, limited data transmission distance, dependence on terrain topology, and data transmission delays. The main disadvantage is the information security of Wi-Fi networks, as anyone can access the transmission medium. It is already possible to transmit Profinet or Ethernet IP data using Wi-Fi, which would be difficult for GSM.<\/p>\n<h4>SHDSL vs Optical<\/h4>\n<p>\nOptical technology generally has a significant advantage over SHDSL, but in some applications, SHDSL can save time and resources on laying and welding optical cables, thus reducing the time required to put the facility into operation. SHDSL does not require special connectors, as the communication cable simply connects to the modem's terminal. Due to the mechanical properties of optical cables, their use is limited in applications related to data transmission between moving objects, where copper conductors are more widely used.<br \/>\n<br \/>Source: <a content=\"nofollow\" rel=\"nofollow\" href=\"https:\/\/habr.com\/ru\/company\/phoenix_contact\/blog\/506936\/\">habr.com<\/a> <\/p>","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"excerpt":{"rendered":"<p>\u041d\u0435\u0441\u043c\u043e\u0442\u0440\u044f \u043d\u0430 \u043f\u043e\u0432\u0441\u0435\u043c\u0435\u0441\u0442\u043d\u043e\u0435 \u0440\u0430\u0441\u043f\u0440\u043e\u0441\u0442\u0440\u0430\u043d\u0435\u043d\u0438\u0435 \u0441\u0435\u0442\u0435\u0439 Ethernet, \u0442\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u0438 \u0441\u0432\u044f\u0437\u0438 \u043d\u0430 \u043e\u0441\u043d\u043e\u0432\u0435 DSL \u043d\u0435 \u0442\u0435\u0440\u044f\u044e\u0442 \u0441\u0432\u043e\u0435\u0439 \u0430\u043a\u0442\u0443\u0430\u043b\u044c\u043d\u043e\u0441\u0442\u0438 \u0438 \u043f\u043e \u0441\u0435\u0439 \u0434\u0435\u043d\u044c. \u0414\u043e \u0441\u0438\u0445 \u043f\u043e\u0440 DSL \u043c\u043e\u0436\u043d\u043e \u0432\u0441\u0442\u0440\u0435\u0442\u0438\u0442\u044c \u0432 \u0441\u0435\u0442\u044f\u0445 \u043f\u043e\u0441\u043b\u0435\u0434\u043d\u0435\u0439 \u043c\u0438\u043b\u0438 \u0434\u043b\u044f \u043f\u043e\u0434\u043a\u043b\u044e\u0447\u0435\u043d\u0438\u044f \u0430\u0431\u043e\u043d\u0435\u043d\u0442\u0441\u043a\u043e\u0433\u043e \u043e\u0431\u043e\u0440\u0443\u0434\u043e\u0432\u0430\u043d\u0438\u044f \u043a \u0441\u0435\u0442\u044f\u043c \u0418\u043d\u0442\u0435\u0440\u043d\u0435\u0442-\u043f\u0440\u043e\u0432\u0430\u0439\u0434\u0435\u0440\u0430, \u0430 \u0432 \u043f\u043e\u0441\u043b\u0435\u0434\u043d\u0435\u0435 \u0432\u0440\u0435\u043c\u044f \u0442\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u044f \u0432\u0441\u0435 \u0447\u0430\u0449\u0435 \u0438\u0441\u043f\u043e\u043b\u044c\u0437\u0443\u0435\u0442\u0441\u044f \u043f\u0440\u0438 \u043f\u043e\u0441\u0442\u0440\u043e\u0435\u043d\u0438\u0438 \u043b\u043e\u043a\u0430\u043b\u044c\u043d\u044b\u0445 \u0441\u0435\u0442\u0435\u0439, \u043d\u0430\u043f\u0440\u0438\u043c\u0435\u0440, \u0432 \u043f\u0440\u043e\u043c\u044b\u0448\u043b\u0435\u043d\u043d\u044b\u0445 \u043f\u0440\u0438\u043b\u043e\u0436\u0435\u043d\u0438\u044f\u0445, \u0433\u0434\u0435 DSL \u0432\u044b\u0441\u0442\u0443\u043f\u0430\u0435\u0442 [&hellip;]<\/p>\n","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"author":1,"featured_media":85742,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[688],"tags":[],"class_list":["post-85741","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-administrirovanie"],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 5.0.2 - aioseo.com -->\n\t<meta name=\"description\" content=\"\u041d\u0435\u0441\u043c\u043e\u0442\u0440\u044f \u043d\u0430 \u043f\u043e\u0432\u0441\u0435\u043c\u0435\u0441\u0442\u043d\u043e\u0435 \u0440\u0430\u0441\u043f\u0440\u043e\u0441\u0442\u0440\u0430\u043d\u0435\u043d\u0438\u0435 \u0441\u0435\u0442\u0435\u0439 Ethernet, \u0442\u0435\u0445\u043d\u043e\u043b\u043e\u0433\u0438\u0438 \u0441\u0432\u044f\u0437\u0438 \u043d\u0430 \u043e\u0441\u043d\u043e\u0432\u0435 DSL \u043d\u0435 \u0442\u0435\u0440\u044f\u044e\u0442 \u0441\u0432\u043e\u0435\u0439 \u0430\u043a\u0442\u0443\u0430\u043b\u044c\u043d\u043e\u0441\u0442\u0438 \u0438 \u043f\u043e \u0441\u0435\u0439 \u0434\u0435\u043d\u044c.\" \/>\n\t<meta name=\"robots\" content=\"max-image-preview:large\" \/>\n\t<meta name=\"author\" content=\"Yuri Gagarin\"\/>\n\t<link rel=\"canonical\" href=\"https:\/\/prohoster.info\/en\/blog\/administrirovanie\/peredacha-dannyh-na-rasstoyanie-do-20-km-po-obychnym-provodam-legko-esli-eto-shdsl\" \/>\n\t<meta name=\"generator\" content=\"All in One SEO (AIOSEO) 5.0.2\" \/>\n\t\t<meta property=\"og:locale\" content=\"en_US\" \/>\n\t\t<meta property=\"og:site_name\" content=\"ProHoster | \u041a\u0443\u043f\u0438\u0442\u044c \u043d\u0430\u0434\u0435\u0436\u043d\u044b\u0439 \u0445\u043e\u0441\u0442\u0438\u043d\u0433 \u0434\u043b\u044f \u0441\u0430\u0439\u0442\u043e\u0432 \u0441 \u0437\u0430\u0449\u0438\u0442\u043e\u0439 \u043e\u0442 DDoS, VPS VDS \u0441\u0435\u0440\u0432\u0435\u0440\u044b\" \/>\n\t\t<meta property=\"og:type\" content=\"article\" \/>\n\t\t<meta property=\"og:title\" content=\"\ud83e\udd47\u041f\u0435\u0440\u0435\u0434\u0430\u0447\u0430 \u0434\u0430\u043d\u043d\u044b\u0445 \u043d\u0430 \u0440\u0430\u0441\u0441\u0442\u043e\u044f\u043d\u0438\u0435 \u0434\u043e 20 \u043a\u043c \u043f\u043e \u043e\u0431\u044b\u0447\u043d\u044b\u043c \u043f\u0440\u043e\u0432\u043e\u0434\u0430\u043c? 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