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Peter S Spinney, 61224 N Main St, Andover, MA 01810

Peter Spinney Phones & Addresses

224 N Main St, Andover, MA 01810    978-4588387   

Lawrence, MA   

73 Burnside St, Lowell, MA 01851    617-5433736   

Marlborough, MA   

34 Coolidge St #3, Lawrence, MA 01843   

Work

Company: Zensar technologies Mar 2012 Position: Avp, global supply chain

Education

School / High School: Northeastern University- Boston, MA Jan 1991 Specialities: MBA in Management and Marketing

Skills

Supply Chain Management • S&OP process • demand planning • inventory reduction • strategic planning • lean manufacturing • e-Commerce • logistics management • execution

Mentions for Peter S Spinney

Peter Spinney resumes & CV records

Resumes

Peter Spinney Photo 27

Peter Spinney

Skills:
Maxwell, Admissions
Peter Spinney Photo 28

Vice President, Supply Chain And Cio At Presstek

Location:
Greater Boston Area
Industry:
Logistics and Supply Chain
Peter Spinney Photo 29

Director Of Ww Supply Chain At Presstek

Location:
Greater Boston Area
Industry:
Printing
Peter Spinney Photo 30

Peter Spinney - Bradford, MA

Work:
Zensar Technologies Mar 2012 to 2000
AVP, Global Supply Chain
Presstek Inc - Hudson, NH Apr 2008 to Sep 2011
Vice President WW Supply Chain
Polaroid - Consumer Electronics and Photography Products - Concord, MA Apr 2006 to Apr 2008
Vice President - Global Logistics, Service Operations, & E-Commerce
Polaroid - Waltham, MA Jun 2001 to Mar 2006
Director of Americas Logistics
Polaroid - Waltham, MA Nov 1999 to May 2001
Director of Global Manufacturing
Polaroid - Norwood, MA Jan 1998 to Oct 1999
Plant Manager - Precision Optical Molding
Education:
Northeastern University - Boston, MA Jan 1991 to Jan 1993
MBA in Management and Marketing
University of Lowell - Lowell, MA Jan 1980 to Jan 1984
BA in Political Science and Management
Skills:
Supply Chain Management, S&OP process, demand planning, inventory reduction, strategic planning, lean manufacturing, e-Commerce, logistics management, execution

Publications & IP owners

Us Patents

Method And System For Calculating Marginal Cost Curves Using Plant Control Models

US Patent:
2006008, Apr 27, 2006
Filed:
Oct 25, 2005
Appl. No.:
11/257543
Inventors:
Howard Rosenof - Newton MA, US
Curt Lefebvre - Boston MA, US
Daniel Kohn - Cambridge MA, US
Peter Spinney - Jamaica Plain MA, US
Assignee:
NeuCo, Inc. - Boston MA
International Classification:
G05B 13/02
US Classification:
700036000
Abstract:
A method and system are provided for calculating a marginal cost curve for a plant at a plant load range comprising a plurality of specified plant loads. The method includes providing a model used for controlling the plant. The model relates plant load and one or more given cost contributing factors. The marginal value for each of the one or more given cost contributing factors at each of the plurality of specified plant loads is determined using the model. A variable cost at each of the plurality of specified plant loads is determined by: (i) multiplying the marginal value of each of the one or more given cost contributing factors at each of the plurality of specified plant loads by a respective unit cost of each of the one or more given cost contributing factors, and (ii) if there are a plurality of given cost contributing factors, summing the results of (i) at each of the plurality of specified plant loads. A marginal variable cost is determined at each of the plurality of specified plant loads by computing a derivative of the variable cost at each of the plurality of specified plant loads. A collection of marginal variable costs at the plurality of specified plant loads defines the marginal cost curve for the plant at the plant load range.

Combined Cycle Power Generation Optimization System

US Patent:
2016023, Aug 11, 2016
Filed:
Sep 5, 2014
Appl. No.:
15/025462
Inventors:
- Boston MA, US
Rob James - Lynn MA, US
Fred Pickard - Norfolk MA, US
John McDermott - Boston MA, US
Peter Spinney - Cambridge MA, US
Steve Piche - Austin TX, US
Assignee:
Neuco, Inc. - Boston MA
International Classification:
F02G 5/02
G05B 13/04
Abstract:
Methods and apparatus for optimizing operation of a combined cycle power plant which combines the use of both gas and steam turbines in a single power generating plant. In one embodiment there is provided a closed-loop hybrid neural network-first principles optimizer for optimally allocating fuel across power generation plant blocks and sub systems to minimize fuel costs while meeting capacity and ramp-rate commitments. Embodiments of the methods and apparatus include a steady state plant optimization model and a dynamic plant optimization model.

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