In urban and regional transport networks, Alcatel 1660SM, as a new generation SDH multi service node (OMS N), has become one of the best platforms for balancing traditional TDM and emerging packet services, thanks to its full rate support from STM-1 to STM-64, high-order crossover capability equivalent to up to 384 × 384 STM-1, and unique design of the Integrated Service Adapter (ISA) data service plugin. However, the complex mixed business load and increasing bandwidth requirements have put forward higher requirements for operation and maintenance personnel - from correctly configuring cross connections, deploying protection mechanisms reasonably, to quickly locating faults such as optical path degradation and data board abnormalities, a set of systematic operation guidelines is needed. This article is based on the product technology description of 1660SM, and systematically outlines its core functions such as hardware composition, synchronization timing, cross connection, protection switching, and data business integration. Combined with common fault scenarios, it provides positioning and recovery suggestions, providing a practical maintenance reference for transmission network engineers.
Product positioning and hardware architecture
1660SM belongs to the Alcatel OMSN product family and is a multi service node suitable for urban edge, regional backbone, and international gateway. It can flexibly add/drop and cross connect PDH (2/34/45/140 Mbit/s) and SDH (STM-1/4/16/64) signals within the same chassis, while providing Ethernet, ATM, and packet ring switching capabilities through ISA cards, truly achieving the integration of TDM and packet services.
Chassis and Slot: 1660SM adopts a 19 inch standard rack, with dimensions of 482 mm (width) x 650 mm (height) x 250 mm (depth). The chassis is divided into two parts: the upper part is the access area (21 slots), which is used to install various access modules (such as 21 × 2M, 3 × 34/45M, 4 × 140/STM-1 electrical, 12 × STM-1 optical, 14 × 10/100BaseT, etc.); The lower part is the motherboard area, which accommodates control, matrix, clock, and business cards, with a maximum of 16 business cards that can be inserted. When fully configured, a single box can provide 378 2M interfaces, 64 140M/STM-1 interfaces, 16 STM-16 interfaces, or 4 STM-64 interfaces.
Core components:
SDH matrix module (including clock reference): realizes high-order/low order cross connection, with high-order capacity of 384 × 384 STM-1 equivalent (i.e. 384 VC-4) and low order capacity of 256 × 256 STM-1 equivalent (i.e. 16128 VC-12). The matrix supports unidirectional/bidirectional point-to-point, point-to-point, SNCP, and MS-SPRing protection.
Device Controller (EC): Responsible for DCC channel management, network management interface (Q interface and local terminal), and database storage, and can be configured through PCMCIA card backup.
Power subsystem: adopting distributed DC/DC conversion, each board comes with its own converter, with an input of -48V~-60V, naturally possessing single point fault isolation capability.
ISA data board: including ISA Ethernet(10/100BaseT)、ISA Gigabit Ethernet、ISA ATM(600M/1200M)、ISA Packet Ring Provide L2 switching, MPLS encapsulation, ATM switching, and statistical multiplexing functions.
Cross connection and Business Configuration Fundamentals
The cross connection matrix of 1660SM is the core of the entire system. When configuring circuits, operation and maintenance personnel need to choose appropriate high-order/low order channels based on the type of business:
High level connection: AU-4 level crossover, suitable for 140M/STM-1 and above rate services, can support VC-4 full path or high-order virtual cascading (VC-4-4c/16c/64c).
Low order connection: TU-12 (2M) and TU-3 (34/45M) level crossover, used for low-speed PDH services and partial data mapping.
Example configuration steps (point-to-point 2M circuit):
On the network management or local terminal, select the 2M port at the source end (such as the first 2M of the 63x2M card in slot 1).
Select the destination 2M port (such as the 5th 2M of slot 2 63 × 2M card).
Specify the crossover type (unidirectional or bidirectional), protection mode (SNCP/I or SNCP/N, or unprotected).
After confirming the crossover, the system automatically establishes a connection and can view the error rate of the circuit in performance monitoring.
Advanced features: The matrix supports continuous cascading of AU4-4C/16C/64C, used to carry ATM or Ethernet converged streams. For example, an STM-16 port can be directly connected to an ISA GigE card through a matrix as a VC-4-16c to achieve a high bandwidth data pipeline.
Clock synchronization and timing mechanism
The 1660SM Clock Reference Subsystem (SETS) provides reliable device clocks (SEC) that can be locked to external 2MHz/2Mbit/s references, any STM-n line, or 2Mbit/s service port, and can also oscillate freely. Key configuration points:
Reference source priority: The system automatically selects the optimal clock source based on the SSM (Synchronous Status Message) quality level and user-defined priority table.