Lean-management method for analyzing the current state and designing a future state From Wikipedia, the free encyclopedia
Value-stream mapping, also known as material- and information-flow mapping,[1] is a lean[2]-management method for analyzing the current state and designing a future state for the series of events that take a product or service from the beginning of the specific process until it reaches the customer. A value stream map is a visual[2] tool that displays all critical steps in a specific process and easily quantifies the time and volume taken at each stage. Value stream maps show the flow of both materials and information as they progress through the process.[3]
Whereas a value stream map represents a core business process that adds value to a material product, a value chain diagram shows an overview of all activities within a company.[3] Other business activities may be represented in "value stream diagrams" and/or other kinds of diagram that represent business processes that create and use business data.
The purpose of value-stream mapping is to identify and remove or reduce "waste" in value streams,[2] thereby increasing the efficiency of a given value stream. Waste removal is intended to increase productivity by creating leaner operations which in turn make waste and quality problems easier to identify.[4]
Value-stream mapping has supporting methods that are often used in lean environments to analyze and design flows at the system level (across multiple processes).
Although value-stream mapping is often associated with manufacturing, it is also used in logistics, supply chain, service related industries, healthcare,[5][6] software development,[7][8] product development,[9] project management,[2] and administrative and office processes.[10]
Daniel T. Jones (1995) identifies seven commonly accepted types of waste. These terms are updated from Toyota's operating model "The Toyota Way" (Toyota Production System, TPS) original nomenclature (muda):[11]
Yasuhiro Monden (1994) identifies three types of operations:[12]
NNVA activities may also be referred to as "sustaining non-value adding", i.e. they have to be done, or they are necessary to sustain the business but do not contribute to customer requirements.[13]
For additional views on waste, see Lean manufacturing.
There are two kinds of value stream maps, current state and future state. The current state value stream map is used to determine what the process currently looks like, the future state value stream map focuses on what the process will ideally look like after process improvements have occurred to the value stream.[3]
The current state value stream map must be created before the future state map and is created by observing the process and tracking the information and material flow.[14] The value stream map is then created using the following symbols:[15]
In a build-to-the-standard form, Shigeo Shingo[16] suggests that the value-adding steps be drawn across the centre of the map and the non–value-adding steps be represented in vertical lines at right angles to the value stream. Thus, the activities become easily separated into the value stream, which is the focus of one type of attention, and the "waste" steps, another type. He calls the value stream the process and the non-value streams the operations. The thinking here is that the non–value-adding steps are often preparatory or tidying up to the value-adding step and are closely associated with the person or machine/workstation that executes that value-adding step. Therefore, each vertical line is the "story" of a person or workstation whilst the horizontal line represents the "story" of the product being created.
Value-stream mapping is a recognised method used as part of Lean Six Sigma methodologies.[17]
Value-stream mapping analyzes both material (artifact) and information flow.[18] The following two resources exemplify the use of VSM in the context of software process improvement in industrial settings:
Hines and Rich (1997) defined seven value-stream mapping tools.[21] These are:
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