Run chart Archives - 6sigma https://6sigma.com/tag/run-chart/ Six Sigma Certification and Training Fri, 28 Feb 2025 13:12:58 +0000 en-US hourly 1 https://6sigma.com/wp-content/uploads/2021/03/cropped-favicon-blue-68x68.png Run chart Archives - 6sigma https://6sigma.com/tag/run-chart/ 32 32 How Run Charts Can Drive Improvement in Healthcare Settings https://6sigma.com/25346-2/ https://6sigma.com/25346-2/#respond Fri, 06 Apr 2018 15:16:45 +0000 https://opexlearning.com/resources/?p=25346

The run chart is a very simple, yet very powerful tool that sees many various kinds of uses across different industries and sectors. Some people tend to ignore it due to its apparent shallowness and inability to convey complex concepts, but the truth is […]

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The run chart is a very simple, yet very powerful tool that sees many various kinds of uses across different industries and sectors. Some people tend to ignore it due to its apparent shallowness and inability to convey complex concepts, but the truth is that this kind of simplicity can actually be extremely beneficial in some situations. Learning to use run charts properly, and identifying the situations that call for them, can lead to great improvements in your skill set as a leader.

Healthcare is a field that regularly benefits from modern tools and advanced techniques, but it can also put some classic, simpler methods to good use and even combine them in different ways to solve problems in optimal ways. It should not be a surprise that run charts see a frequent use in this environment, and any healthcare professional who still hasn’t integrated run charts into their facility should definitely reconsider the way they are running things.

Representing Studies in an Intuitive Manner

You’ll commonly be running various studies and tests on patients to determine their current status, and it’s important to have a good way of visualizing the results of those tests. A run chart can give you a very simple, yet effective overview of how a certain variable has changed over time, which will not only allow you to know if you’re moving in the right direction, but it can make the situation more intuitive for your colleagues as well.

After all, if it’s your job to implement improvement processes in the facility, some of your coworkers may not be familiar with the methods used for analyzing and evaluating data. It’s important to have some way of representing things in an easily understandable way that allows you to get the point across with minimal additional explanation.

This of course assumes that the data you’re working with is simple enough to be visualized in this manner in the first place. Sometimes you can’t represent the way something changes with a set of points connected by a bar, and you might want to use a different technique in that case. It’s important to ensure that this does not complicate things too much for your coworkers though, and you must always be striving to keep things as simple as possible at a glance.

Identifying Long-Term Trends

It’s sometimes important to identify when a certain aspect of the processes in your healthcare facility has been changing with a specific trend, especially if you can identify a negative one that can call for an improvement. Depending on the kind of data you’re working with and how it’s structured, those patterns can sometimes be difficult to spot. A run chart can make it clear when there is a certain trend over time though, especially if you adjust the scale appropriately.

It can also prove very useful when comparing several different data sets, in which case you’ll benefit a lot from having a simple way to compare the changes and the way the variables have evolved over time. Sure, you can analyze things algorithmically most times, but it’s often far easier to just get a quick overview of the situation.

Conclusion

Never underestimate the usefulness of a run chart, and study their application very carefully when you’re working in a healthcare facility. You will soon realize that there are many situations that call for the use of a run chart, and applying the tool correctly in your workflow can significantly improve your workflow, not to mention that of your colleagues. Even those without a significant understanding of data can still benefit a lot from such representations and learn a lot from the data visualized in them.

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Differences Between Run Charts and Control Charts https://6sigma.com/differences-between-run-charts-and-control-charts/ https://6sigma.com/differences-between-run-charts-and-control-charts/#respond Thu, 29 Mar 2018 13:00:26 +0000 https://opexlearning.com/resources/?p=25511

The run chart and the control chart are both highly useful tools in analyzing the performance of a process, and of the organization as a whole. While some managers tend to use them interchangeably and ignore the finer nuances between them, there are actually some […]

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The run chart and the control chart are both highly useful tools in analyzing the performance of a process, and of the organization as a whole. While some managers tend to use them interchangeably and ignore the finer nuances between them, there are actually some significant differences between the two tools that require an educated approach in using them. The good news is that it’s actually not that hard to understand the differences, and doing so can have a great impact on your performance as a leader in your organization later on.

The Run Chart

A run chart is quite simple in its design and application, and it allows you to visualize the way a single variable or group of variables changes over time in relation to your operations. There are many applications for a run chart, and it’s one of the most flexible tools available for analyzing trends in data, but its simplicity is often mistaken for a lack of utility.

A good application of a run chart is identifying cycles or other odd variations in a process. Whenever some deviation from the norm occurs, and it can’t be traced to a random factor affecting the process externally, a run chart can give you a good idea of the source of the issue and allow you to localize it very efficiently.

It’s not rare to see run charts used to analyze how the performance of the company has been evolving in relation to the initial expectations about it, and they can indeed visualize this type of relation very effectively. To this end, run charts are also great for showcasing your progress to your customers or someone else who might be interested in finding out where the project currently stands.

The Control Chart

A control chart can be seen as an extension of the run chart, and it does indeed have many similar characteristics. However, where a run chart is concerned with showing how a process has been evolving through time with no regard to any target parameters, a control chart can give you a good overview of the current situation while taking some limits into account.

In other words, using a control chart can help you visualize if a process is staying within its reasonable norms. In cases when it doesn’t, the control chart will also show you the exact nature and scale of the deviation, allowing you to take localized action to correct the issue.

A control chart is more useful than a run chart when deviations are important to be accounted for, and when you need to be able to take corrective action as quickly as possible. On the other hand, it can unnecessarily complicate things if that kind of information is not relevant to your current activities. In that case, you should probably use a run chart instead, or at least minimize the number of limits visualized on the control chart.

When to Use Each One

In the end, both types of charts have their own uses, and you’ll find them appropriate in different situations, depending on the way you’re approaching your current problems. It’s a good idea to use a run chart whenever it fits the bill though, as it can often give you a better idea of what the situation is like without adding an unnecessary layer of complication.

Ono the other hand, if limits are important in your operations and in deciding your future course of action, it’s critical to ensure that you’re applying control charts in every situation where they make sense. With time, you’ll develop some intuition for when to use each type of chart, and when to actively avoid one or the other.

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Glossary of Six Sigma Terms: Letters P – R https://6sigma.com/glossary-six-sigma-terms-letters-p-r/ https://6sigma.com/glossary-six-sigma-terms-letters-p-r/#respond Wed, 26 Apr 2017 20:22:32 +0000 https://6sigma.com/?p=21035 P
  • PERT.

    Six Sigma Black Belts and Green Belts, when organizing schedules for large projects, will often use PERT to compile and plan their activities. PERT is a graphical method usually completed via computer. It stands for Project Evaluation & Review Technique. To use PERT, it is beneficial to have some experience of […]

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    • PERT.

      Six Sigma Black Belts and Green Belts, when organizing schedules for large projects, will often use PERT to compile and plan their activities. PERT is a graphical method usually completed via computer. It stands for Project Evaluation & Review Technique. To use PERT, it is beneficial to have some experience of CPM (Critical Path Method) as they are similar processes. In PERT, a series of horizontal and diagonal connected lines represent your activities, with numbered nodes at key points standing for milestones. You should number each line differently, to represent the durations for each project task. PERT is used in process improvement to organize and plan timelines for the project. It is highly effective for scoping the duration of your work.

     

    • PEST Analysis.

      A type of strategic approach, you can use PEST analysis to analyze your organization’s macro-environment. It is an acronym for Political, Economic, Social, and Technological. Using PEST analysis, you should run your company by each of these four areas to glean detailed information about their drivers and influences. Political should include a wide range of data. It should cover concepts like political stability, economic and taxation policies, as well as trading agreements and any other national or international concerns. Economic should shed light on your company’s interest rates, employment levels, economic trends, and GDP. While Social will allow you to analyze the religious influences (if any) affecting your company, as well as any population demographic factors, and other religious and cultural concerns.

      Finally, Technology, the most wide-reaching of the four, will cover an array of subjects. Subjects like innovation, manufacturing costs, product quality, and the way technology affects marketing and distribution. The internet is a prime example of how technology has affected the business world. Six Sigma Black Belts and Green Belts may wish to use PEST analysis to learn more about the company on whose project they are working. It is a similar process to the SWOT analysis and Porter’s Five Forces analysis types.

     

    • Poka-Yoke.

      Use in Lean Production, Poka Yoke is a device used by Lean practitioners to prevent error. When we make mistakes in production, they can often be costly and time-consuming to correct. Poka-Yoke was designed to simplify the correction process by immediately highlighting problems or making mistakes immediately clear. As an example, you could easily forget about a metal nut that requires tightening with a torque spanner. You may not realize you have left it loose. With Poka-Yoke, you could design a fixture that prevents the assembly line from moving until the torque spanner has recorded the correct torque. This could be automatic and relay information directly to a computer that will alert you something is wrong. That way, the error won’t cause further problems down the line and can be quickly.

     

    Q

    • QS9000/TS16949.

      First published in 1994, QS9000 is a type of quality system developed by Daimler-Chrysler, Ford, and General Motors. QS9000 is used most often in the automotive industry and in other types of manufacturing. While its designers reissued QS9000 in 1998, companies have started phasing it out, replacing it with an arguably superior system called TS16949. Although some organizations still use QS9000, it is likely to be completely replaced in the coming years. Large automotive companies like Ford rely on suppliers for their parts, materials, and services. Additionally, these services must comply with the principles of QS9000 if it is to be effective.

      QS9000 is based on an older standard, ISO9000:1994, which many automotive companies often used as a baseline. It imposed extra requirements and interpretations in production but designers updated it to ISO9000:2000 at the Millennium. This new standard was significantly different to its predecessor. However, in recent years designers have modified it to create TS16949, as opposed to revamping QS9000. A series of manuals, developed by the AIAG (Automotive Industry Action Group), provided precise information about how organizations should operate by the TS16949 standard. Six Sigma practitioners working in the automotive industry will work alongside QS9000/TS16949 protocols while conducting quality improvement.

     

    R

    • Randomized Block Design. 

      This is an approach to Design of Experiments, also known as Experimental Design. If you wanted to compare four cleaning products, you could use Randomized Block Design to make a realistic test to determine the best. In Completely Randomized Design, you would randomly allocate a series of dirty kitchen surfaces to volunteers with each cleaning product. This way, you could choose one product for up to all four surfaces. In a Randomized Block Design, however, you place a block on your surfaces. This means you would allocate only one surface from each volunteer to each product. Six Sigma Black Belts or Green Belts, when involved in Experimental Design or statistical analysis, may wish to use Randomized Block Design.

     

    • Robust Design.

      A man named Genichi Taguchi pioneered the Robust Design concept, which forms the basis of the Taguchi Approach to Experimental Design. Taguchi stressed that reducing variation in design should be a core principle for process improvement. It was his belief that it’s better to create a product that provides consistently good results. This was in contrast to products that gave better results but were inconsistent. Taguchi called this idea the ‘robustness’ of design, and manufacturing companies utilize its principles all over the world. It is essential for Six Sigma and Lean practitioners to cultivate such robustness in process improvement.

      Taguchi also created a quantitative model called the Taguchi Loss Function, which allows you to identify the lowest costing design easily. Building on his previous work, Taguchi came up with an approach for designing products with robustness in mind. His process has three stages. System design (using scientific and engineering principles to build a prototype). Parameter design (identifying the settings that will minimize variation for product and process parameters). Tolerances (setting tolerances that will control parameters and reduce losses).

     

    • Run Charts.

      Six Sigma Belts use Run charts on process improvement projects. Green Belts, when conducting statistical work may choose to use run charts to plot data values in time order. Similar to a standard line graph, you have an X and Y axis, labeled according to your timescale and the data set with which you are dealing. Once you’ve plotted your data onto the graph and joined, you should draw a center line to show the median value. The run chart defines your run as one or more consecutive points of the same median. When you analyze the patterns, they will indicate a special cause, such as:

     

    • Too few or too many runs for a series of points.

     

    • Too many data points in your run.

     

    • An abnormally long sequence of rising or falling data points.

     

    • Too many points that form a zigzag pattern.

     

    It is beneficial to be familiar with control charts, as run charts are similar, though they both possess important differences. While control charts are better at perpetually monitoring processes, run charts provide a better process with which to investigate opportunities for improvement. Six Sigma Black Belts or Green Belts may use run charts to assess their data when prioritizing their process improvement tasks.

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