DocumentCode
781612
Title
Communication system requirements for implementation of a large scale demand side management and distribution automation
Author
Mak, Sioe ; Radford, Denny
Author_Institution
Distribution Control Syst. Inc., Hazelwood, MO, USA
Volume
11
Issue
2
fYear
1996
fDate
4/1/1996 12:00:00 AM
Firstpage
683
Lastpage
689
Abstract
Large scale system implementation of demand side management (DSM) and distribution automation (DA) intended for an electric utility network serving a large customer base (one million or larger) spread over a large geographical area requires a two-way communication system. Unlike pilot projects where testing and feasibility studies are highly structured and controlled, many of the results from the pilot tests are not readily transportable into the design of very large systems. In a multitasking environment, system data throughput, response time and communication bandwidth utilization are not only functions of communication baud rate and performance, but are also highly dependent on the system infrastructure, local geography, the customer base and the regulatory environment. In this paper, three generic communication infrastructures are analyzed and expressions for the system response time and message throughput rate are developed. The system message rate and response time requirements are discussed and their relationship to the communication infrastructure and the meter reading application throughput is analyzed. The impact of poor communication performance to the system response time and throughput is presented
Keywords
demand side management; distribution networks; electricity supply industry; power system control; power system measurement; telecontrol; telemetry; DSM; communication bandwidth utilization; communication baud rate; communication system requirements; data throughput; demand side management; distribution automation; electric utility; generic communication infrastructures; message rate; meter reading; multitasking environment; performance; power systems; response time; Automatic control; Automation; Communication system control; Control systems; Delay; Large-scale systems; Multitasking; Power industry; System testing; Throughput;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.489323
Filename
489323
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