This document provides an overview of the PT. Eigen International Cable (EIC) network. The EIC will connect Jakarta to Singapore via Sumatra with approximately 2000 km of cable, including 500 km of submarine cable. The network configuration includes DWDM/OADM equipment along the route to provide an initial capacity of 120-200 Gbps. Cable landing stations and buildings will terminate both submarine and terrestrial cables.
Sub sea cables carry 99% of the world data/voice traffic. This presentation will covers the components in a typical sub sea cable system: dry segment and wet segment. Including the O&M of a sub sea cable and what happen in the event of a cable cut / shunt fault.
Telecommunications Short Courses - Telecommunications CoursesMILCOM Institute
MILCOM Institute is an RTO(Registered Training Organisation) in Australia that offers a wide range of NBN and Telstra Approved short courses in Telecommunications that includes Open Cabling Registration, Structured Cabling Course, Coax Cabling Endorsement, Aerial Cabling Endorsement, Optical Fibre Cabling, Underground Cabling Endorsement, etc. To get more details about all courses, simply call us @ 1300 369 320 or visit MILCOM website.
Xiamen Winlink Cable Factory, is a professional manufacturer of electronic electronics & communication cables, relative patch cords and accessories.
Our products cover spheres of CCTV, MATV, Ethernet network, audio & video and automatic control etc.
Product Series:
Coaxial cable for satellite TV, CATV, CCTV like RG6/RG59/RG58/RG11/RG8 etc;
Cat5e/Cat6/Cat7 Lan cable etc for Telecommunication Network;
Electrical cable, Speaker cable, Control cable and cable accessory.
Contact us at:
danniesliuy@gmail.com
Presentation railtel (railway communication infra company) by jmv lpsMahesh Chandra Manav
Indian Railways RITES ,RAILTEL, IRCON ,RVNL ,Metro Rail Project ,DFCC Ltd ,Indian Rail Port Corporation Ltd, Indian Rail Warehose Ltd ,India Rail Station Development Corportaion Ltd ,Kalindi Rail Corporation Ltd , India First Bullet Train
This presentation covers:
Concepts of optical fiber communication in detail
Total internal reflection
inter-modulation, dispersion effects in OFC
Impairments in OFC
Advantages in OFC
Different types of optical cables
OFC network elements : splitters, splices, connectors, lasers
optical sources and optical detectors
Optical Link Budget
Sub sea cables carry 99% of the world data/voice traffic. This presentation will covers the components in a typical sub sea cable system: dry segment and wet segment. Including the O&M of a sub sea cable and what happen in the event of a cable cut / shunt fault.
Telecommunications Short Courses - Telecommunications CoursesMILCOM Institute
MILCOM Institute is an RTO(Registered Training Organisation) in Australia that offers a wide range of NBN and Telstra Approved short courses in Telecommunications that includes Open Cabling Registration, Structured Cabling Course, Coax Cabling Endorsement, Aerial Cabling Endorsement, Optical Fibre Cabling, Underground Cabling Endorsement, etc. To get more details about all courses, simply call us @ 1300 369 320 or visit MILCOM website.
Xiamen Winlink Cable Factory, is a professional manufacturer of electronic electronics & communication cables, relative patch cords and accessories.
Our products cover spheres of CCTV, MATV, Ethernet network, audio & video and automatic control etc.
Product Series:
Coaxial cable for satellite TV, CATV, CCTV like RG6/RG59/RG58/RG11/RG8 etc;
Cat5e/Cat6/Cat7 Lan cable etc for Telecommunication Network;
Electrical cable, Speaker cable, Control cable and cable accessory.
Contact us at:
danniesliuy@gmail.com
Presentation railtel (railway communication infra company) by jmv lpsMahesh Chandra Manav
Indian Railways RITES ,RAILTEL, IRCON ,RVNL ,Metro Rail Project ,DFCC Ltd ,Indian Rail Port Corporation Ltd, Indian Rail Warehose Ltd ,India Rail Station Development Corportaion Ltd ,Kalindi Rail Corporation Ltd , India First Bullet Train
This presentation covers:
Concepts of optical fiber communication in detail
Total internal reflection
inter-modulation, dispersion effects in OFC
Impairments in OFC
Advantages in OFC
Different types of optical cables
OFC network elements : splitters, splices, connectors, lasers
optical sources and optical detectors
Optical Link Budget
A very small aperture terminal (VSAT) is a small telecommunication earth station that receives and transmits real-time data via satellite.
A VSAT transmits narrow and broadband signals to orbital satellites. The data from the satellites is then transmitted to different hubs in other locations around the globeT.
Presentation at Networkshop46.
Over the past 12 months, Jisc has been through an extensive design and procurement exercise aimed at overhauling the way in which access connectivity solutions are delivered to customers, with the objectives of achieving greater reliability, greater flexibility, and greater value for money.
Hear from the Jisc team involved in the design and procurement of the new access arrangements, and the suppliers Jisc is partnering with to deliver the solutions. They talk about the technology involved, the benefits to Janet connected organisations, and the 5 year deployment and ‘transformation’ plan.
Speakers:
Rob Evans, chief network architect, Jisc
James Blessing, deputy director of network architecture, Jisc
We are offering a comprehensive high speed networking solution which is including 3.2T Co-packaged Optic (CPO), 100G, 200G, 400G & 800G transceivers, DACs, AOCs, ACCs & Loopback modules. We are fulfil your research (R&D) stage product development, DVT/EVT pre-product testing, mass production and also for final application use.
Welcome to contact us for more product info.
Fronthaul technologies kwang_submit_to_slideshareKwangkoog Lee
5G Fronthaul Technologies (Especially, this document specifies the e-CPRI technology, because many telcos are now considering the eCPRI for the next fronthaul.)
Low-cost communication system for explorer-class underwater remotely operated...TELKOMNIKA JOURNAL
Disaster recovery from underwater earthquake, plane crashes into the sea, and monitoring
underwater cables or piping for energy purpose are underwater missions for Remotely Operated
Underwater Vehicle (ROV) in ASEAN MATE 2018 Competition. Two essentials factor to perform
successfully in this ROV competition are design of an efficient communication protocol system and a
low-cost communication hardware. In this research, an optimal communication system between RS-232
serial communication transmission and RS-485 serial communication transmission is developed to obtain
the optimal solution. Both communication system is tested in Tech_SAS ROV-Telkom University
Indonesia, a microcontroller underwater ROV based which used single microcontroller to control actuator,
sensor and communication, and measured the Quality of Services (QoS) for end-to-end delay and packets
loss. From the the experiment and evaluation for the two schemes, shows 12.57 ms end-to-end delay, 0%
data packet error and $6 RS-485 communication system are the optimal solution for Tech_SAS ROV.
end to end delay performance analysis of video conferencing over lteINFOGAIN PUBLICATION
Mental development to use the data, such as multimedia, video and online games led to the development of a technique called LTE long term evolution. The goal of this paper is to analyze the quality of service (QoS) performance and its effects when video is streamed over LTE .Using OPNET (Optimized Network Engineering Tool). the performance can be simulated having Different scenarios for video conferencing . in addition to we also measured the performance of packet End-to-End delay .
China has a rapidly developing submarine cable system manufacturing industry which operates in a healthy competitive manner. Subsea cables can fall into several different system product streams including relatively standard products for long haul telecoms projects (the subject of this paper) and customised products for the Oil & Gas, Scientific Observation Systems, Defence applications and HV subsea cables. While much of the Telecoms product has been sold in the domestic market, Hengtong Marine has broken into the International Market by addressing client concerns over quality and now has a track record for deployed overseas systems. This has been achieved in part by completing an offshore cable system sea trial, which is a requirement of the cable system qualification to ITU-T G-976 & ITU-T G.972 standards. The requirement for a sea trial is a barrier which every cable system producer has to address to achieve international sales. Hengtong Marine is moving forward to promote and improve the image of “Global Quality from China”.
Framework for Delivering IPTV Services over Satellite NetworksAJAL A J
Framework for Delivering IPTV Services over
Satellite Networks
Home Network
Access Network (AN)
IP based Core Network (IPCN)
Video Head End (VHE)
Satellite Link
Network resources allocated for particular application traffic are aware of the characteristics of L4+ content to be transmitted. One embodiment of the invention realizes network resource allocation in terms of three intelligent modules, gateway, provisioning and classification. A gateway module exerts network control functions in response to application requests for network resources. The network control functions include traffic path setup, bandwidth allocation and so on. Characteristics of the content are also specified in the received application network resource requests. Under request of the gateway module, a provisioning module allocates network resources such as bandwidth in optical networks and edge devices as well. An optical network resource allocation leads to a provisioning optical route. Under request of the gateway module, a classification module differentiates applications traffic according to content specifications, and thus creates and applies content-aware rule data for edge devices to forward content-specified traffic towards respective provisioning optical routes.
https://www.google.com/patents/US7580349?dq=US+7580349&hl=en&sa=X&ei=DXVSVID-EoTc8AW-_IDwBw&ved=0CB8Q6AEwAA
Similar to PT Eigen Network - Network Planning & Overview (20)
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Final project report on grocery store management system..pdfKamal Acharya
In today’s fast-changing business environment, it’s extremely important to be able to respond to client needs in the most effective and timely manner. If your customers wish to see your business online and have instant access to your products or services.
Online Grocery Store is an e-commerce website, which retails various grocery products. This project allows viewing various products available enables registered users to purchase desired products instantly using Paytm, UPI payment processor (Instant Pay) and also can place order by using Cash on Delivery (Pay Later) option. This project provides an easy access to Administrators and Managers to view orders placed using Pay Later and Instant Pay options.
In order to develop an e-commerce website, a number of Technologies must be studied and understood. These include multi-tiered architecture, server and client-side scripting techniques, implementation technologies, programming language (such as PHP, HTML, CSS, JavaScript) and MySQL relational databases. This is a project with the objective to develop a basic website where a consumer is provided with a shopping cart website and also to know about the technologies used to develop such a website.
This document will discuss each of the underlying technologies to create and implement an e- commerce website.
Welcome to WIPAC Monthly the magazine brought to you by the LinkedIn Group Water Industry Process Automation & Control.
In this month's edition, along with this month's industry news to celebrate the 13 years since the group was created we have articles including
A case study of the used of Advanced Process Control at the Wastewater Treatment works at Lleida in Spain
A look back on an article on smart wastewater networks in order to see how the industry has measured up in the interim around the adoption of Digital Transformation in the Water Industry.
Hierarchical Digital Twin of a Naval Power SystemKerry Sado
A hierarchical digital twin of a Naval DC power system has been developed and experimentally verified. Similar to other state-of-the-art digital twins, this technology creates a digital replica of the physical system executed in real-time or faster, which can modify hardware controls. However, its advantage stems from distributing computational efforts by utilizing a hierarchical structure composed of lower-level digital twin blocks and a higher-level system digital twin. Each digital twin block is associated with a physical subsystem of the hardware and communicates with a singular system digital twin, which creates a system-level response. By extracting information from each level of the hierarchy, power system controls of the hardware were reconfigured autonomously. This hierarchical digital twin development offers several advantages over other digital twins, particularly in the field of naval power systems. The hierarchical structure allows for greater computational efficiency and scalability while the ability to autonomously reconfigure hardware controls offers increased flexibility and responsiveness. The hierarchical decomposition and models utilized were well aligned with the physical twin, as indicated by the maximum deviations between the developed digital twin hierarchy and the hardware.
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)MdTanvirMahtab2
This presentation is about the working procedure of Shahjalal Fertilizer Company Limited (SFCL). A Govt. owned Company of Bangladesh Chemical Industries Corporation under Ministry of Industries.
CFD Simulation of By-pass Flow in a HRSG module by R&R Consult.pptxR&R Consult
CFD analysis is incredibly effective at solving mysteries and improving the performance of complex systems!
Here's a great example: At a large natural gas-fired power plant, where they use waste heat to generate steam and energy, they were puzzled that their boiler wasn't producing as much steam as expected.
R&R and Tetra Engineering Group Inc. were asked to solve the issue with reduced steam production.
An inspection had shown that a significant amount of hot flue gas was bypassing the boiler tubes, where the heat was supposed to be transferred.
R&R Consult conducted a CFD analysis, which revealed that 6.3% of the flue gas was bypassing the boiler tubes without transferring heat. The analysis also showed that the flue gas was instead being directed along the sides of the boiler and between the modules that were supposed to capture the heat. This was the cause of the reduced performance.
Based on our results, Tetra Engineering installed covering plates to reduce the bypass flow. This improved the boiler's performance and increased electricity production.
It is always satisfying when we can help solve complex challenges like this. Do your systems also need a check-up or optimization? Give us a call!
Work done in cooperation with James Malloy and David Moelling from Tetra Engineering.
More examples of our work https://www.r-r-consult.dk/en/cases-en/
5. PT. Eigen Network
Network Overview
Executive Summary
EIC – Eigen International Cable
Connecting Jakarta – Batu Pahat - Singapore via
Sumatera
Mostly 24 FPs cable; Minimum Design Capacity 320
Gbps/FP End to End (Jakarta – Singapore)
120 – 200 Gbps Initial Equipage
(Preferable) ready for 40 G transmission or more
1400+ km Terrestrial Segments; 500+ km Submarine
Segments
5
7. PT. Eigen Network
Network Overview
EIC Route Overview
7
Changi North
Batam
Batu Pahat
Dumai
Ketapang
Jakarta
Fig. 2.1 – EIC
8. PT. Eigen Network
Network Overview
EIC Physical Route (1)
8
Dumai
Batu Pahat
Batam
Singapore
EIC-S1
EIC-S2
EIC-S3
Fig. 2.2 – EIC Part 1
Double Armor
Single Armor
9. PT. Eigen Network
Network Overview
EIC Physical Route (2)
9
Fig. 2.3 – EIC Part 2
Dumai
Ketapang
EIC-S4
Pekanbaru
Jambi
Palembang
B. Lampung
10. PT. Eigen Network
Network Overview
EIC Physical Route (3)
10
EIC-S5
Ketapang
Jakarta
Fig. 2.4 – EIC Part 3
Double Armor
Single Armor
11. PT. Eigen Network
Network Overview
EIC Physical Route (4)
11
Pantai Mutiara CLS
Cyber 2
Fig. 2.5 – EIC Part 4
12. PT. Eigen Network
Network Overview
EIC Physical Route (5)
12
SG PoP
Global Switch
Changi North -
BMH
Fig. 2.6 – EIC Part 5
13. PT. Eigen Network
Network Overview
Cable Stub at Singapore Offshore
13
Single Armor
Double Armor
Fig. 2.7 –EIC S1 with Stub at Singapore Offshore
Changi North
Batam
Cable Stub
15. PT. Eigen Network
Network Overview
EIC Estimated Cable Length
15
SG PoP (Global Switch)
SG BMH
BATAM BMH
BATAM
BATU PAHAT
DUMAI CLS & BMH
PEKANBARU
JAMBI
PALEMBANG
LAMPUNG
KETAPANG CLS & BMH
JAKARTA CLS & BMH
CYBER 2
MARINE
TERRESTRIAL
209 km
474.7 km
282 km
352 km
95.67 km
134.6 km 19 km
195.8 km
188.4 km
46.15 km
0.4 km
21 km
Fig. 3.1 – EIC Cable Estimation
15 km (Stub)
17. PT. Eigen Network
Network Overview
Equipment
17
SG PoP (Global Switch)
SG BMH
BATAM BMH
BATAM
BATU PAHATDUMAI
PEKANBARU
JAMBI
PALEMBANG
LAMPUNG
KETAPANG
JAKARTA
CYBER 2
MARINE
TERRESTRIAL
• Singapore
• Batu Pahat
• Cyber 2
Dedicated
SDH/Mux
• Several
places
(Sumatera )
OA
• Singapore
• Batam
• Batu Pahat
• Dumai
• Pekan Baru
• Jambi
• Palembang
• Lampung
• Jakarta CLS
• Jakarta Cyber2
DWDM
/
OADM
Fig. 4.1 – EIC Equipment Configuration
18. PT. Eigen Network
Network Overview
Day-1
Lightpath/Channel Configuration
18
60 Gbps (JKT – SG)
Cyber 2 SG PoP
Jakarta Ketapang
Lampung Palembang PekanbaruJambi
Batu Pahat
Dumai Batam
Transmission Capacity 60 Gbps
(JKT-LMP-PLM-JB-PBR-DM-BTM-SG)
Each Intermediate Drop @ 10 Gbps
Fig. 4.2 – Direct and Transit Transmission Capacity
20 Gbps (JKT – BP) ?
60 Gbps
(BP – SG)
19. PT. Eigen Network
Network Overview
Day-1
Connectivity
19
Cyber 2 SG PoP
Bandar
Lampung
Palembang PekanbaruJambi
Batu Pahat
Dumai Batam
60 Gbps
10 Gbps (Max.)
Fig. 4.3 – Logical Connectivity
20. PT. Eigen Network
Network Overview
Client Interfaces – Traffic Matrix
20
Between Singapore Jakarta
Singapore - -
Jakarta 4x10G Ethernet
4xSTM-16
8xSTM-4
16xSTM-1
-
Batam 2x1G Ethernet
1xSTM-16
1xSTM-4
4xSTM-1
2x1G Ethernet
1xSTM-16
1xSTM-4
4xSTM-1
Dumai As Batam As Batam
Pekanbaru As Batam As Batam
Jambi As Batam As Batam
Palembang As Batam As Batam
Bandar Lampung As Batam As Batam
Batu Pahat 4x10G Ethernet
4xSTM-16
8xSTM-4
16xSTM-1
1x10G Ethernet
2xSTM-16
4xSTM-4
8xSTM-1
Table 4.1 – Traffic Matrix for EIC System
21. PT. Eigen Network
Network Overview
Protection on Terrestrial Segment
21
DUMAI
PEKANBARU
JAMBI
PALEMBANG
LAMPUNG
KETAPANG
209
km
475
km
278
km
380
km
76 km
Main Path
Protection Path
Fig. 4.4 – Main and Protection Path Dumai – Ketapang
.
.
.
Protection Path via
Another Provider
(have not yet fixed)
• Wavelengths
• Dark Fiber
Protection
Level
• Equipment
• Physical / Cable
Cut
Addressed
Failures
22. PT. Eigen Network
Network Overview
Possible OLA Placement (TBC)
22
Dumai
Duri Gelombang Sorek Rengat Kemuning
Tua
B. Thambi
B. LencirS. LilinPrabumulihBaturajaKemuningBandar
Jaya
Pekanbaru Jambi
PalembangKetapang
Pantai Mutiara
CLS
Cyber 2
Bandar
Lampung
Terrestrial
Submarine
Fig. 4.5 – Possible OLA in Sumatera
24. PT. Eigen Network
Network Overview
EIC Cable Portion
24
Cable Portion Total Length (km)
Submarine Cable 579.95 (including stub)
Total DA
Total SA
216.51
363.44
Terrestrial Cable 1453.77
Total Cable 2033.72
Table 5.1. EIC Total Cable Portion
The EIC Cable Portion are divided into Submarine
cable portion and Terrestrial cable portion.
G.654 and G.655 cable type will be used for
Submarine and Terrestrial, respectively.
The total cable length can be seen in Table 1.
25. PT. Eigen Network
Network Overview
EIC Submarine Cable Portion
25
Double Armor G.654 (km)
Single Armor G.654 (km)
Dumai Batu Pahat Batam
Changi North
20,6 125 50,2 46,4 132 10 4,59 38,9 2,66
Ketapang Jakarta CLS
37,6 55,2 41,8
12,34
Fig. 5.1 – EIC Submarine Cable type
26. PT. Eigen Network
Network Overview
EIC Terrestrial Cable Portion
26
Terrestrial G.655 (km)
Batam BMH Batam CLS Changi North
Jakarta CLS Cyber 2
19
21
Global Switch
0.4
Dumai
1400 +
Ketapang
Fig. 5.2 – EIC Terrestrial Cable type
27. PT. Eigen Network
Network Overview
Number of Cables & Fibers
27
SG PoP (Global Switch)
SG BMH
BATAM BMH
BATAM
BATU PAHATDUMAI
PEKANBARU
JAMBI
PALEMBANG
LAMPUNG
KETAPANG
JAKARTA
CYBER 2
MARINE
TERRESTRIAL
24 FPs
24 FPs
24 FPs
24 FPs
24 FPs
24 FPs 24 FPs
24 FPs
24 FPs
24 FPs
2 x 24 FPs
( 2 cables)
48 FPs
Fig. 5.3 – Number of Cables & Fibers
24 FPs
29. PT. Eigen Network
Network Overview
Amplifier or Regen Sites
29
Equipment
Building – Amplifier or Regen Sites
ODF ODF
Terrestrial duct
TERRESTRIAL CONTRACTOR
TERMINATES TERRESTRIAL
CABLE ON ODF
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
TERRESTRIAL CABLE
Terrestrial duct
TERRESTRIAL CONTRACTOR
TERMINATES TERRESTRIAL
CABLE ON ODF
EQUIPMENT SUPPLIER
PROVIDES ODF
Fig. 6.1 – Amplifier or Regen site
30. PT. Eigen Network
Network Overview
Jakarta CLS & NOC
30
Fig. 6.2 – Cable Landing Station for Jakarta
MARINE CABLE
TERRESTRIAL CABLE
Equipment
Cable Landing Station/NOC
ODF ODFBMH
(CLS CONTRACTOR)
Duct
(< 20m) Terrestrial duct
MARINE CONTRACTOR
TERMINATES MARINE CABLE ON
ODF
TERRESTRIAL CONTRACTOR
TERMINATES TERRESTRIAL
CABLE ON ODF
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
EQUIPMENT SUPPLIER
PROVIDES ODF
31. PT. Eigen Network
Network Overview
Ketapang Cable Landing Station
31
Fig. 6.3 – Cable Landing Station for Ketapang
MARINE CABLE
TERRESTRIAL CABLE
Equipment
Cable Landing Station
ODF ODFBMH
(CLS CONTRACTOR)
Duct
(< 20m) Terrestrial duct
MARINE CONTRACTOR
TERMINATES MARINE CABLE ON
ODF
TERRESTRIAL CONTRACTOR
TERMINATES TERRESTRIAL
CABLE ON ODF
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
EQUIPMENT SUPPLIER
PROVIDES ODF
32. PT. Eigen Network
Network Overview
Dumai Cable Landing Station
32
Fig. 6.4 – Cable Landing Station for Dumai
MARINE CABLE
TERRESTRIAL CABLE
Equipment
Cable Landing Station
ODF ODFBMH
(CLS CONTRACTOR)
Duct
(< 20m) Terrestrial duct
MARINE CONTRACTOR
TERMINATES MARINE CABLE ON
ODF
TERRESTRIAL CONTRACTOR
TERMINATES TERRESTRIAL
CABLE ON ODF
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
EQUIPMENT SUPPLIER
PROVIDES ODF
Terrestrial Duct for
future connection
FUTURE TERRESTRIAL CABLE CONNECTION
33. PT. Eigen Network
Network Overview
Batu Pahat Cable Landing Station
33
Fig. 6.5 – Cable Landing Station for Batu Pahat
Cable Landing Station
ODF ODF
Equipment
MARINE CONTRACTOR
TERMINATES MARINE
CABLE ON ODF
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
MARINE CABLE
BMH
(CLS CONTRACTOR)
EQUIPMENT
SUPPLIER
PROVIDES ODF
FUTURE TERRESTRIAL CABLE CONNECTION
Duct
(< 50m)
Terrestrial
duct
34. PT. Eigen Network
Network Overview
Batam Cable Landing Station
34
Fig. 6.6 – Cable Landing Station for Batam
Equipment
Cable Landing Station
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
ODF ODF
400 m Terrestrial duct
MARINE CABLE
BMH
EQUIPMENT
SUPPLIER
PROVIDES ODF
CLS CONTRACTOR TO
CONSTRUCT BMH &
INSTALL TERRESTRIAL
DUCT AND FIBER
TERRESTRIAL CABLE
MARINE CABLE
SUPPLIER TO SPLICE
THE FIBER
FUTURE TERRESTRIAL CABLE CONNECTION
Terrestrial
duct
35. PT. Eigen Network
Network Overview
Connection to Singapore PoP
35
Fig. 6.7 – PoP connection for Singapore
Equipment
Global Switch
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
ODF
21 km Terrestrial duct
MARINE CABLE
TERRESTRIAL CABLE
BMH
EQUIPMENT
SUPPLIER
PROVIDES ODF
CUSTOMER CONNECTION
MARINE CABLE SUPPLIER
TO SPLICE ONTO THE
TERRESTRIAL FIBER
TERRESTRIAL
CONSTRUCTOR TO
PROVIDE TERRESTRIAL
DUCT AND INSTALL FIBER
ODF
Customer
Connect is
Provided within
the Building
36. PT. Eigen Network
Network Overview
Connection to Jakarta PoP
36
Fig. 6.8 – PoP connection for Jakarta
Equipment
Cyber 2
EQUIPMENT SUPPLIER
CONNECTS EQUIPMENT TO ODF
PROVIDING IN – STATION CABLING
ODF
19 km Terrestrial
duct
MARINE CABLE
TERRESTRIAL CABLE
CLS
EQUIPMENT
SUPPLIER
PROVIDES ODF
CUSTOMER CONNECTION
BMH
TERRESTRIAL CONSTRUCTOR
TO PROVIDE TERRESTRIAL
DUCT AND INSTALL FIBER
ODF
Customer
Connect is
Provided within
the Building
41. PT. Eigen Network
Network Overview
Legend & Abbreviation
CLS = Cable Landing Station
CME = Civil Mechanical & Electrical
NOC = Network Operation Center
ODF/DDF = Optical/Digital Distribution Frame
RPL = Route Position List
SITAC =Site Acquisition
41
A = Approve
As = Assist
R = Responsible
S = Supervise
Ac = Accountable
42. PT. Eigen Network
Network Overview
General Checklist
42
Preparation
Matrix
Engineering
Matrix
Supply
Matrix
Construction
Installation
Matrix
Testing
Matrix
Training
Matrix